{"facet": [
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON",	"protocol":"Nouryon SOP",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR,modified draft OECD TG",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"GRACIOUS D5.3",	"provider":"IOM",	"protocol":"ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"DIN ISO 9277-2014-01",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":11,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6/study?top=P-CHEM",	"substance":"organic pigment Red 254 transparent, diketopyrrolopyrrole, 43nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,UNIVIE",	"protocol":"!!! SOP MISSING !!!,ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"DPP_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-7bd6de68-a312-3254-8b3f-9f46d6976ce6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON",	"protocol":"Nouryon SOP",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR,modified draft OECD TG",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"GRACIOUS D5.3",	"provider":"IOM",	"protocol":"ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"DIN ISO 9277-2014-01",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":11,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-686c54f0-f64d-3650-a365-b313f189344e/study?top=P-CHEM",	"substance":"organic pigment Red 254 opaque, diketopyrrolopyrrole, 233nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,UNIVIE",	"protocol":"!!! SOP MISSING !!!,ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"DPP_non-nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-686c54f0-f64d-3650-a365-b313f189344e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON",	"protocol":"Nouryon SOP",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"!!! SOP MISSING !!!",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"GRACIOUS D5.3",	"provider":"IOM",	"protocol":"ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"DIN ISO 9277-2014-01",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":11,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8b723699-129e-3a45-9f79-bc38b173cee8/study?top=P-CHEM",	"substance":"Organic pigment Red 254 opaque, diketopyrrolopyrrole, 230nm, borderline hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,UNIVIE",	"protocol":"!!! SOP MISSING !!!,ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"DPP_premixed",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-8b723699-129e-3a45-9f79-bc38b173cee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON,UKRI/CEH",	"protocol":"Nouryon SOP,hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.08. Nanomaterial dustiness",	"endpoint":"DUSTINESS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=DUSTINESS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"CEN/TC 137, draft 2016-12",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"DIN ISO 9277-2014-01",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":11,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a/study?top=P-CHEM",	"substance":"Organic pigment Blue 15, Cu-Phthalocyanine 17nm, hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,UNIVIE",	"protocol":"!!! SOP MISSING !!!,ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"CuPhthalo_nano",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-a36f748e-e1a9-365a-b960-7bc3516e264a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON,UKRI/CEH",	"protocol":"Nouryon SOP,hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.08. Nanomaterial dustiness",	"endpoint":"DUSTINESS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=DUSTINESS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"CEN/TC 137, draft 2016-12",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"!!! SOP MISSING !!!",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"DIN ISO 9277-2014-01",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":10,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1/study?top=P-CHEM",	"substance":"Organic pigment Green 7, CuPhthalocyanine 14nm hydrophobic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UNIVIE",	"protocol":"ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"CuPhthalo_halogen",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-f35876f9-a2d4-3ef8-bfc4-b6820615b9b1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON,UKRI/CEH",	"protocol":"Nouryon SOP,UKAS 3502-ICP-OES SOP,hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.08. Nanomaterial dustiness",	"endpoint":"DUSTINESS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=DUSTINESS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"CEN/TC 137, draft 2016-12",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":4,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,IOM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"DIN ISO 9277-2014-01",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":11,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, rods, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,UNIVIE",	"protocol":"!!! SOP MISSING !!!,ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"Fe2O3_nano_A",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-eb581804-9bf6-3c19-9e7b-8c59b523843a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON,UKRI/CEH",	"protocol":"Nouryon SOP,UKAS 3502-ICP-OES SOP,hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.08. Nanomaterial dustiness",	"endpoint":"DUSTINESS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=DUSTINESS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"CEN/TC 137, draft 2016-12",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":4,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,IOM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"DIN ISO 9277-2014-01",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":18,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2/study?top=P-CHEM",	"substance":"Inorganic pigment Red 101, 37nm, hydrophilic",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,UNIVIE",	"protocol":"!!! SOP MISSING !!!,ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"Fe2O3_nano_B",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-f7ff8291-f8f7-3aca-9eee-b1c6815653d2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON,UKRI/CEH",	"protocol":"Nouryon SOP,hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.08. Nanomaterial dustiness",	"endpoint":"DUSTINESS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=DUSTINESS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"CEN/TC 137, draft 2016-12",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"!!! SOP MISSING !!!,DIN EN ISO 1183-3",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":4,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR,modified draft OECD TG",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":14,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,BfR,HWU,IOM,NRCWE,RIVM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"DIN ISO 9277-2014-01",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":11,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=P-CHEM",	"substance":"BASO4 NM-220",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,UNIVIE",	"protocol":"!!! SOP MISSING !!!,ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000037. Oxidative Stress",	"endpoint":"ENM_0000037_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000037_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=TOX",	"substance":"BASO4 NM-220",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"activation of Nrf2 antioxidant response pathway",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000068. Cell Viability",	"endpoint":"ENM_0000068_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000068_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf/study?top=TOX",	"substance":"BASO4 NM-220",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"NRU,WST-1",	"publicname":"NM-220",	"substancetype":"CHEBI_133326",	"substance_uuid":"GRCS-d0b59516-d4f0-3c1c-9f07-d017568d93bf",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON,UKRI/CEH",	"protocol":"Nouryon SOP,hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"!!! SOP MISSING !!!,DIN EN ISO 1183-3",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR,modified draft OECD TG",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"DIN ISO 9277-2014-01",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":21,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-eb392821-5d5c-374c-863a-5381fe095cae/study?top=P-CHEM",	"substance":"NM-212 Cerium (IV) Oxide precipitated, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,UNIVIE",	"protocol":"!!! SOP MISSING !!!,ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"JRCNM02102a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-eb392821-5d5c-374c-863a-5381fe095cae",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UKRI/CEH",	"protocol":"hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.08. Nanomaterial dustiness",	"endpoint":"DUSTINESS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=DUSTINESS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"GRACIOUS WP3",	"provider":"ECETOC",	"protocol":"Tantra et al. (2012)",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"ECETOC",	"protocol":"ISO, 2015",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF,IIT",	"protocol":"ISO19057 + SOP nanoGRAVUR,NANoREG D2.08 SOP 06",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":14,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,BfR,HWU,IOM,NRCWE,RIVM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"ECETOC",	"protocol":"10.1201/b17774-3",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"ECETOC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"GRACIOUS WP3",	"provider":"ECETOC",	"protocol":"Gosens et al. (2015)",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":18,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=P-CHEM",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"ECETOC,UNIVIE",	"protocol":"ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP,Izak-Nau and Voetz (2014)",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000037. Oxidative Stress",	"endpoint":"ENM_0000037_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000037_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=TOX",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"activation of Nrf2 antioxidant response pathway",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000068. Cell Viability",	"endpoint":"ENM_0000068_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000068_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f/study?top=TOX",	"substance":"NM-110 Zinc Oxide, uncoated",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"NRU,WST-1",	"publicname":"JRCNM01100a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-18f0f0e8-b5f4-39bc-b8f8-9c869c8bd82f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4/study?top=P-CHEM",	"substance":"NM-402 MWCNT 12.7 nm",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"ISTEC-CNR (MEASUREMENTS) + BASF (EVALUATION)",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"JRCNM04002a",	"substancetype":"NPO_354",	"substance_uuid":"GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4/study?top=P-CHEM",	"substance":"NM-402 MWCNT 12.7 nm",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"KRISS",	"protocol":"In-house KRISS SOP which was established according to suggested requirements in ISO 17025 (General requirements for the competence of testing and calibration laboratories), and technically to JIS K 0131 (General rules for X-ray diffractometric analysis)",	"publicname":"JRCNM04002a",	"substancetype":"NPO_354",	"substance_uuid":"GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4/study?top=P-CHEM",	"substance":"NM-402 MWCNT 12.7 nm",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"JRCNM04002a",	"substancetype":"NPO_354",	"substance_uuid":"GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4/study?top=P-CHEM",	"substance":"NM-402 MWCNT 12.7 nm",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,ISTEC-CNR (MEASUREMENTS) + BASF (EVALUATION)",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"JRCNM04002a",	"substancetype":"NPO_354",	"substance_uuid":"GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4/study?top=P-CHEM",	"substance":"NM-402 MWCNT 12.7 nm",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"JRCNM04002a",	"substancetype":"NPO_354",	"substance_uuid":"GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4/study?top=P-CHEM",	"substance":"NM-402 MWCNT 12.7 nm",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"ECETOC",	"protocol":"10.1186/1743-8977-10-23",	"publicname":"JRCNM04002a",	"substancetype":"NPO_354",	"substance_uuid":"GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4/study?top=P-CHEM",	"substance":"NM-402 MWCNT 12.7 nm",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"KRÜSS Technical Note TN306e, C. Rulison, 1999,",	"publicname":"JRCNM04002a",	"substancetype":"NPO_354",	"substance_uuid":"GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4/study?top=P-CHEM",	"substance":"NM-402 MWCNT 12.7 nm",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF",	"protocol":"IsoElectric Point- Zeta potential SOP",	"publicname":"JRCNM04002a",	"substancetype":"NPO_354",	"substance_uuid":"GRCS-e9760442-10be-3887-9887-4c8adf4f4ed4",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UKRI/CEH",	"protocol":"hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"GRACIOUS WP3",	"provider":"HARVARD",	"protocol":"",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"GRACIOUS WP3",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"GRACIOUS D5.3",	"provider":"IOM",	"protocol":"ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"10.1007/s10570-018-1718-2",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":20,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89/study?top=P-CHEM",	"substance":"Pyrolytic, 34.75 nm ± 22.89",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UNIVIE",	"protocol":"ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"CeO2 (pyrolytic)",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-e7fa71ce-5688-3f7f-bcc8-0b2836729c89",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"PATROLS",	"protocol":"Nouryon SOP",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.08. Nanomaterial dustiness",	"endpoint":"DUSTINESS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=DUSTINESS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"GRACIOUS WP3",	"provider":"ECETOC",	"protocol":"NANOGENOTOX (2013b); OECD (2015c)",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"GRACIOUS WP3",	"provider":"BASF",	"protocol":"DIN EN ISO 1183-3",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,ECETOC",	"protocol":"ISO, 2015. OECD (2015c). NANOGENOTOX D4.2 (2012) \"Transmission electron microscopic characterization of NANOGENOTOX nanomaterials\" https://www.anses.fr/en/system/files/nanogenotox_deliverable.2.pdf,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":5,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF,IIT",	"protocol":"ISO19057 + SOP nanoGRAVUR,NANoREG D2.08 SOP 06,modified draft OECD TG",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF",	"protocol":"Journal of Physics: Conf. Series 838 (2017) 012033",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"ECETOC",	"protocol":"NANOGENOTOX (2013b); OECD (2015c)",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.10. Surface tension",	"endpoint":"SURFACE_TENSION_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_TENSION_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"GRACIOUS WP3",	"provider":"ECETOC",	"protocol":"unpublished study report",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":11,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023/study?top=P-CHEM",	"substance":"NM-200 Synthetic Amorphous Silica PR-A-02",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,ECETOC,UNIVIE",	"protocol":"ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP,NANOGENOTOX (2013b);  OECD (2015c)",	"publicname":"JRCNM02000a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-e5a9409c-e6e5-3cab-9a3e-6b98856c1023",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a/study?top=P-CHEM",	"substance":"CNT Mitsui7",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON",	"protocol":"Nouryon SOP",	"publicname":"CNT MITSUI 7",	"substancetype":"NPO_126",	"substance_uuid":"GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a/study?top=P-CHEM",	"substance":"CNT Mitsui7",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"PATROLS",	"protocol":"NANOGENOTOX D4.2 (2012) \"Transmission electron microscopic characterization of NANOGENOTOX nanomaterials\" https://www.anses.fr/en/system/files/nanogenotox_deliverable.2.pdf",	"publicname":"CNT MITSUI 7",	"substancetype":"NPO_126",	"substance_uuid":"GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a/study?top=P-CHEM",	"substance":"CNT Mitsui7",	"reference":"GRACIOUS WP3",	"provider":"",	"protocol":"",	"publicname":"CNT MITSUI 7",	"substancetype":"NPO_126",	"substance_uuid":"GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a/study?top=P-CHEM",	"substance":"CNT Mitsui7",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"PATROLS",	"protocol":"NANOGENOTOX D4.2 (2012) \"Transmission electron microscopic characterization of NANOGENOTOX nanomaterials\" https://www.anses.fr/en/system/files/nanogenotox_deliverable.2.pdf",	"publicname":"CNT MITSUI 7",	"substancetype":"NPO_126",	"substance_uuid":"GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a/study?top=P-CHEM",	"substance":"CNT Mitsui7",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"CNT MITSUI 7",	"substancetype":"NPO_126",	"substance_uuid":"GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a/study?top=P-CHEM",	"substance":"CNT Mitsui7",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"IMC-BAS NANOGENOTOX D4.1",	"publicname":"CNT MITSUI 7",	"substancetype":"NPO_126",	"substance_uuid":"GRCS-c4b71082-277b-3b14-b34e-b65ccbc7b64a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3/study?top=P-CHEM",	"substance":"Cellulose nanofibrils 50 nm diameter x 6.6 µm length",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CNF-50-nm",	"substancetype":"CHEBI_133349",	"substance_uuid":"GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3/study?top=P-CHEM",	"substance":"Cellulose nanofibrils 50 nm diameter x 6.6 µm length",	"reference":"GRACIOUS WP3",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CNF-50-nm",	"substancetype":"CHEBI_133349",	"substance_uuid":"GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3/study?top=P-CHEM",	"substance":"Cellulose nanofibrils 50 nm diameter x 6.6 µm length",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CNF-50-nm",	"substancetype":"CHEBI_133349",	"substance_uuid":"GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3/study?top=P-CHEM",	"substance":"Cellulose nanofibrils 50 nm diameter x 6.6 µm length",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"CNF-50-nm",	"substancetype":"CHEBI_133349",	"substance_uuid":"GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3/study?top=P-CHEM",	"substance":"Cellulose nanofibrils 50 nm diameter x 6.6 µm length",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"CNF-50-nm",	"substancetype":"CHEBI_133349",	"substance_uuid":"GRCS-09a068c8-fe09-308b-9d53-7f4a144ea6b3",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-2c35918e-b639-3215-ac92-4e761b58bdbc/study?top=P-CHEM",	"substance":"Cellulose nanofibrils 80 nm diameter x 6.6 µm length",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CNF-80-nm",	"substancetype":"CHEBI_133349",	"substance_uuid":"GRCS-2c35918e-b639-3215-ac92-4e761b58bdbc",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-2c35918e-b639-3215-ac92-4e761b58bdbc/study?top=P-CHEM",	"substance":"Cellulose nanofibrils 80 nm diameter x 6.6 µm length",	"reference":"GRACIOUS WP3",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CNF-80-nm",	"substancetype":"CHEBI_133349",	"substance_uuid":"GRCS-2c35918e-b639-3215-ac92-4e761b58bdbc",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-2c35918e-b639-3215-ac92-4e761b58bdbc/study?top=P-CHEM",	"substance":"Cellulose nanofibrils 80 nm diameter x 6.6 µm length",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"CNF-80-nm",	"substancetype":"CHEBI_133349",	"substance_uuid":"GRCS-2c35918e-b639-3215-ac92-4e761b58bdbc",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-2c35918e-b639-3215-ac92-4e761b58bdbc/study?top=P-CHEM",	"substance":"Cellulose nanofibrils 80 nm diameter x 6.6 µm length",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"CNF-80-nm",	"substancetype":"CHEBI_133349",	"substance_uuid":"GRCS-2c35918e-b639-3215-ac92-4e761b58bdbc",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499/study?top=P-CHEM",	"substance":"25 nm x 250 nm rod-like",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"Cellulose nanocrystals",	"substancetype":"NPO_1375",	"substance_uuid":"GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499/study?top=P-CHEM",	"substance":"25 nm x 250 nm rod-like",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"!!! SOP MISSING !!!",	"publicname":"Cellulose nanocrystals",	"substancetype":"NPO_1375",	"substance_uuid":"GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.4. Density",	"endpoint":"PC_DENSITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_DENSITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499/study?top=P-CHEM",	"substance":"25 nm x 250 nm rod-like",	"reference":"GRACIOUS WP3",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"Cellulose nanocrystals",	"substancetype":"NPO_1375",	"substance_uuid":"GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499/study?top=P-CHEM",	"substance":"25 nm x 250 nm rod-like",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"https://www.doi.org/10.1007/s10570-018-1718-2",	"publicname":"Cellulose nanocrystals",	"substancetype":"NPO_1375",	"substance_uuid":"GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499/study?top=P-CHEM",	"substance":"25 nm x 250 nm rod-like",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"HSPH-NIEHS",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"Cellulose nanocrystals",	"substancetype":"NPO_1375",	"substance_uuid":"GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":10,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499/study?top=P-CHEM",	"substance":"25 nm x 250 nm rod-like",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UNIVIE",	"protocol":"ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"Cellulose nanocrystals",	"substancetype":"NPO_1375",	"substance_uuid":"GRCS-3c8df960-ea0a-32df-99a6-4ee4138fc499",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON",	"protocol":"Nouryon SOP,Trace element analysis in colloidal silica by ICP-OES,Trace metal analysis in colloidal silica by ICP-MS after sample dilution and addition of HF",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"GRACIOUS WP3",	"provider":"NOURYON",	"protocol":"",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":5,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,LEITAT,NOURYON",	"protocol":"DLS,Electrospray Differential Mobility Analysis (ES-DMA),NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,PARTICLE SIZE CHARACTERIZATION IN COLLOIDAL SILICA EXP320 USING DYNAMIC LIGHT SCATTERING,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF,IIT",	"protocol":"ISO19057 + SOP nanoGRAVUR,NANoREG D2.08 SOP 06",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":4,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,IOM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"GRACIOUS WP3",	"provider":"NOURYON",	"protocol":"SPECIFIC SURFACE AREA IN COLLOIDAL SILICA",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":10,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39617606-aa4b-3bba-a6dc-41888d98286a/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, 30%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UNIVIE",	"protocol":"ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"Silica_std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-39617606-aa4b-3bba-a6dc-41888d98286a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON",	"protocol":"Nouryon SOP,Trace element analysis in colloidal silica by ICP-OES,Trace metal analysis in colloidal silica by ICP-MS after sample dilution and addition of HF",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"GRACIOUS WP3",	"provider":"NOURYON",	"protocol":"",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":5,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,LEITAT,NOURYON",	"protocol":"DLS,Electrospray Differential Mobility Analysis (ES-DMA),NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,PARTICLE SIZE CHARACTERIZATION IN COLLOIDAL SILICA EXP320 USING DYNAMIC LIGHT SCATTERING,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF,IIT",	"protocol":"ISO19057 + SOP nanoGRAVUR,NANoREG D2.08 SOP 06",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":4,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,IOM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"GRACIOUS WP3",	"provider":"NOURYON",	"protocol":"SPECIFIC SURFACE AREA IN COLLOIDAL SILICA",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":10,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847/study?top=P-CHEM",	"substance":"Silicon dioxide, silane modified, 28%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UNIVIE",	"protocol":"ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"Silica_Silane",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-afc0b88b-0fc1-3a1f-8b25-fa2074285847",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON",	"protocol":"Nouryon SOP,Trace element analysis in colloidal silica by ICP-OES,Trace metal analysis in colloidal silica by ICP-MS after sample dilution and addition of HF",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"GRACIOUS WP3",	"provider":"NOURYON",	"protocol":"",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":5,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,LEITAT,NOURYON",	"protocol":"DLS,Electrospray Differential Mobility Analysis (ES-DMA),NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,PARTICLE SIZE CHARACTERIZATION IN COLLOIDAL SILICA EXP320 USING DYNAMIC LIGHT SCATTERING,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF,IIT",	"protocol":"ISO19057 + SOP nanoGRAVUR,NANoREG D2.08 SOP 06",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":4,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,IOM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":10,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the silica surface, 25%",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UNIVIE",	"protocol":"ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"Silica_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-d382fe3f-db17-3eb4-924b-900a7e55653a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, aggregated nanoparticles, 12% SiO2, pH 11",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON",	"protocol":"Nouryon SOP,Trace metal analysis in colloidal silica by ICP-MS after sample dilution and addition of HF,UKAS 3502-ICP-OES SOP",	"publicname":"Silica_anis_Std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, aggregated nanoparticles, 12% SiO2, pH 11",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"Silica_anis_Std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, aggregated nanoparticles, 12% SiO2, pH 11",	"reference":"GRACIOUS WP3",	"provider":"NOURYON",	"protocol":"",	"publicname":"Silica_anis_Std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":5,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, aggregated nanoparticles, 12% SiO2, pH 11",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,LEITAT,NOURYON",	"protocol":"DLS,Electrospray Differential Mobility Analysis (ES-DMA),NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,PARTICLE SIZE CHARACTERIZATION IN COLLOIDAL SILICA EXP320 USING DYNAMIC LIGHT SCATTERING,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"Silica_anis_Std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, aggregated nanoparticles, 12% SiO2, pH 11",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"Silica_anis_Std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, aggregated nanoparticles, 12% SiO2, pH 11",	"reference":"https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR",	"publicname":"Silica_anis_Std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2/study?top=P-CHEM",	"substance":"Silicon dioxide, Standard silica, aggregated nanoparticles, 12% SiO2, pH 11",	"reference":"GRACIOUS WP3",	"provider":"NOURYON",	"protocol":"SPECIFIC SURFACE AREA IN COLLOIDAL SILICA",	"publicname":"Silica_anis_Std",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5e26c5b8-622f-390d-9a66-ded34d320ee2",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the surface, aggregated nanoparticles, 7% total solids, pH 8.5",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NOURYON",	"protocol":"Nouryon SOP,Trace metal analysis in colloidal silica by ICP-MS after sample dilution and addition of HF,UKAS 3502-ICP-OES SOP",	"publicname":"Silica_anis_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the surface, aggregated nanoparticles, 7% total solids, pH 8.5",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"Silica_anis_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the surface, aggregated nanoparticles, 7% total solids, pH 8.5",	"reference":"GRACIOUS WP3",	"provider":"NOURYON",	"protocol":"",	"publicname":"Silica_anis_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":5,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the surface, aggregated nanoparticles, 7% total solids, pH 8.5",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,LEITAT,NOURYON",	"protocol":"DLS,Electrospray Differential Mobility Analysis (ES-DMA),NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,PARTICLE SIZE CHARACTERIZATION IN COLLOIDAL SILICA EXP320 USING DYNAMIC LIGHT SCATTERING,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"Silica_anis_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the surface, aggregated nanoparticles, 7% total solids, pH 8.5",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"Silica_anis_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the surface, aggregated nanoparticles, 7% total solids, pH 8.5",	"reference":"https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF",	"protocol":"ISO19057 + SOP nanoGRAVUR",	"publicname":"Silica_anis_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the surface, aggregated nanoparticles, 7% total solids, pH 8.5",	"reference":"GRACIOUS D5.3",	"provider":"IOM",	"protocol":"ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"Silica_anis_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.05. Nanomaterial specific surface area",	"endpoint":"SPECIFIC_SURFACE_AREA_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SPECIFIC_SURFACE_AREA_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab/study?top=P-CHEM",	"substance":"Silicon dioxide, Al substituted into the surface, aggregated nanoparticles, 7% total solids, pH 8.5",	"reference":"GRACIOUS WP3",	"provider":"NOURYON",	"protocol":"SPECIFIC SURFACE AREA IN COLLOIDAL SILICA",	"publicname":"Silica_anis_Al",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-5634f351-6c1e-3e7e-ac42-3c485e18feab",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f2fae007-5ab8-33ad-b4fc-cd17af45f806/study?top=P-CHEM",	"substance":"ZnCdSeS, hydrophobic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UKRI/CEH",	"protocol":"hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"ZnCdSeS",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-f2fae007-5ab8-33ad-b4fc-cd17af45f806",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f2fae007-5ab8-33ad-b4fc-cd17af45f806/study?top=P-CHEM",	"substance":"ZnCdSeS, hydrophobic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"Manual analysis",	"publicname":"ZnCdSeS",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-f2fae007-5ab8-33ad-b4fc-cd17af45f806",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f2fae007-5ab8-33ad-b4fc-cd17af45f806/study?top=P-CHEM",	"substance":"ZnCdSeS, hydrophobic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"ZnCdSeS",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-f2fae007-5ab8-33ad-b4fc-cd17af45f806",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-3495d444-3bb8-30a7-b547-b2732e9edbec/study?top=P-CHEM",	"substance":"ZnCdSeS-COOH, hydrophilic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UKRI/CEH",	"protocol":"hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"ZnCdSeS-COOH",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-3495d444-3bb8-30a7-b547-b2732e9edbec",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-3495d444-3bb8-30a7-b547-b2732e9edbec/study?top=P-CHEM",	"substance":"ZnCdSeS-COOH, hydrophilic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"Manual analysis",	"publicname":"ZnCdSeS-COOH",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-3495d444-3bb8-30a7-b547-b2732e9edbec",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-3495d444-3bb8-30a7-b547-b2732e9edbec/study?top=P-CHEM",	"substance":"ZnCdSeS-COOH, hydrophilic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"ZnCdSeS-COOH",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-3495d444-3bb8-30a7-b547-b2732e9edbec",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7c09e231-0f9c-3bc5-b08c-dbf4eb515dcc/study?top=P-CHEM",	"substance":"ZnCuInS/ZnS, hydrophobic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UKRI/CEH",	"protocol":"hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"ZnCuInS/ZnS",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-7c09e231-0f9c-3bc5-b08c-dbf4eb515dcc",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7c09e231-0f9c-3bc5-b08c-dbf4eb515dcc/study?top=P-CHEM",	"substance":"ZnCuInS/ZnS, hydrophobic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"Manual analysis",	"publicname":"ZnCuInS/ZnS",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-7c09e231-0f9c-3bc5-b08c-dbf4eb515dcc",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-7c09e231-0f9c-3bc5-b08c-dbf4eb515dcc/study?top=P-CHEM",	"substance":"ZnCuInS/ZnS, hydrophobic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"ZnCuInS/ZnS",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-7c09e231-0f9c-3bc5-b08c-dbf4eb515dcc",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-b6fa01d0-2c3d-3649-9e5e-5fa4cb8a46ec/study?top=P-CHEM",	"substance":"ZnCuInS/ZnS-COOH_smaller, hydrophilic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UKRI/CEH",	"protocol":"hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"ZnCuInS/ZnS-COOH_smaller",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-b6fa01d0-2c3d-3649-9e5e-5fa4cb8a46ec",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-b6fa01d0-2c3d-3649-9e5e-5fa4cb8a46ec/study?top=P-CHEM",	"substance":"ZnCuInS/ZnS-COOH_smaller, hydrophilic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"Manual analysis",	"publicname":"ZnCuInS/ZnS-COOH_smaller",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-b6fa01d0-2c3d-3649-9e5e-5fa4cb8a46ec",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-b6fa01d0-2c3d-3649-9e5e-5fa4cb8a46ec/study?top=P-CHEM",	"substance":"ZnCuInS/ZnS-COOH_smaller, hydrophilic (530nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"ZnCuInS/ZnS-COOH_smaller",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-b6fa01d0-2c3d-3649-9e5e-5fa4cb8a46ec",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-97b5a6ea-7d46-370f-8a8f-9d111c2bfd6b/study?top=P-CHEM",	"substance":"ZnCuInS/ZnS-COOH_larger, hydrophilic (700nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UKRI/CEH",	"protocol":"hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"ZnCuInS/ZnS-COOH_larger",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-97b5a6ea-7d46-370f-8a8f-9d111c2bfd6b",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-97b5a6ea-7d46-370f-8a8f-9d111c2bfd6b/study?top=P-CHEM",	"substance":"ZnCuInS/ZnS-COOH_larger, hydrophilic (700nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"Manual analysis",	"publicname":"ZnCuInS/ZnS-COOH_larger",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-97b5a6ea-7d46-370f-8a8f-9d111c2bfd6b",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-97b5a6ea-7d46-370f-8a8f-9d111c2bfd6b/study?top=P-CHEM",	"substance":"ZnCuInS/ZnS-COOH_larger, hydrophilic (700nm)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"ZnCuInS/ZnS-COOH_larger",	"substancetype":"NPO_589",	"substance_uuid":"GRCS-97b5a6ea-7d46-370f-8a8f-9d111c2bfd6b",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49/study?top=P-CHEM",	"substance":"Ag, 30 µm length, 100 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UKRI/CEH",	"protocol":"hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"Ag-NW1_long",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49/study?top=P-CHEM",	"substance":"Ag, 30 µm length, 100 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"Ag-NW1_long",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49/study?top=P-CHEM",	"substance":"Ag, 30 µm length, 100 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"Ag-NW1_long",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49/study?top=P-CHEM",	"substance":"Ag, 30 µm length, 100 nm diameter",	"reference":"GRACIOUS WP3",	"provider":"NANOGAP",	"protocol":"",	"publicname":"Ag-NW1_long",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49/study?top=P-CHEM",	"substance":"Ag, 30 µm length, 100 nm diameter",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,LEITAT",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"Ag-NW1_long",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49/study?top=P-CHEM",	"substance":"Ag, 30 µm length, 100 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"Ag-NW1_long",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49/study?top=P-CHEM",	"substance":"Ag, 30 µm length, 100 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"Ag-NW1_long",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-4bc2010a-b541-31e2-b4dc-ed740b4dbc49",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22/study?top=P-CHEM",	"substance":"Ag, 3 µm length, 50 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UKRI/CEH",	"protocol":"hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"Ag-NW2_short",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22/study?top=P-CHEM",	"substance":"Ag, 3 µm length, 50 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"LEITAT",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"Ag-NW2_short",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22/study?top=P-CHEM",	"substance":"Ag, 3 µm length, 50 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"Ag-NW2_short",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.1. Appearance",	"endpoint":"GI_GENERAL_INFORM_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=GI_GENERAL_INFORM_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22/study?top=P-CHEM",	"substance":"Ag, 3 µm length, 50 nm diameter",	"reference":"GRACIOUS WP3",	"provider":"NANOGAP",	"protocol":"",	"publicname":"Ag-NW2_short",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22/study?top=P-CHEM",	"substance":"Ag, 3 µm length, 50 nm diameter",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,LEITAT",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"Ag-NW2_short",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22/study?top=P-CHEM",	"substance":"Ag, 3 µm length, 50 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"Ag-NW2_short",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22/study?top=P-CHEM",	"substance":"Ag, 3 µm length, 50 nm diameter",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"Ag-NW2_short",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-1b85b8b4-c6fb-3057-985f-c8b082f0ca22",	"substance_owner":"GRACIOUS"	},
	{
	"value":"CHMO_0001075. Analytical Methods",	"endpoint":"ANALYTICAL_METHODS_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ANALYTICAL_METHODS_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a/study?top=P-CHEM",	"substance":"Ag NM-300K 10 w/w%, <20 nm, 4% w/w% each of Polyoxyethylene Glycerol Trioleate and Polyoxyethylene (20) Sorbitan mono-Laurat (Tween 20).",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"PATROLS,UKRI/CEH",	"protocol":"Nouryon SOP,hotplate digestion for 90 minutes + UKAS 3504-ICP-MS SOP",	"publicname":"NM-300K",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.04. Nanomaterial aspect ratio/shape",	"endpoint":"ASPECT_RATIO_SHAPE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ASPECT_RATIO_SHAPE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a/study?top=P-CHEM",	"substance":"Ag NM-300K 10 w/w%, <20 nm, 4% w/w% each of Polyoxyethylene Glycerol Trioleate and Polyoxyethylene (20) Sorbitan mono-Laurat (Tween 20).",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"ISTEC-CNR (MEASUREMENTS) + BASF (EVALUATION)",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in",	"publicname":"NM-300K",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a/study?top=P-CHEM",	"substance":"Ag NM-300K 10 w/w%, <20 nm, 4% w/w% each of Polyoxyethylene Glycerol Trioleate and Polyoxyethylene (20) Sorbitan mono-Laurat (Tween 20).",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC,KRISS",	"protocol":"!!! SOP MISSING !!!,In-house KRISS SOP which was established according to suggested requirements in ISO 17025 (General requirements for the competence of testing and calibration laboratories), and technically to JIS K 0131 (General rules for X-ray diffractometric analysis)",	"publicname":"NM-300K",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.5. Particle size distribution (Granulometry)",	"endpoint":"PC_GRANULOMETRY_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_GRANULOMETRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a/study?top=P-CHEM",	"substance":"Ag NM-300K 10 w/w%, <20 nm, 4% w/w% each of Polyoxyethylene Glycerol Trioleate and Polyoxyethylene (20) Sorbitan mono-Laurat (Tween 20).",	"reference":"GRACIOUS WP3,https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"BASF,ISTEC-CNR (MEASUREMENTS) + BASF (EVALUATION)",	"protocol":"NanoDefine Deliverable 6.3 (2017) \"Measurement of the minimal external dimension of the primary particle of particulate materials from TEM images by the NanoDefine ParticleSizer software\". NanoDefine SOP 5.1 (2016) \"Nanoparticle size characterization in ,https://www.doi.org/10.1016/j.impact.2017.12.005",	"publicname":"NM-300K",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.19. Stability (thermal)",	"endpoint":"PC_THERMAL_STABILITY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_THERMAL_STABILITY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a/study?top=P-CHEM",	"substance":"Ag NM-300K 10 w/w%, <20 nm, 4% w/w% each of Polyoxyethylene Glycerol Trioleate and Polyoxyethylene (20) Sorbitan mono-Laurat (Tween 20).",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"NRCWE",	"protocol":"TGA-MS-screening",	"publicname":"NM-300K",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a/study?top=P-CHEM",	"substance":"Ag NM-300K 10 w/w%, <20 nm, 4% w/w% each of Polyoxyethylene Glycerol Trioleate and Polyoxyethylene (20) Sorbitan mono-Laurat (Tween 20).",	"reference":"GRACIOUS WP4,https://www.doi.org/10.1016/j.impact.2021.100341",	"provider":"BASF,IIT",	"protocol":"ISO19057 + SOP nanoGRAVUR,NANoREG D2.08 SOP 06",	"publicname":"NM-300K",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.07. Nanomaterial surface chemistry",	"endpoint":"SURFACE_CHEMISTRY_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=SURFACE_CHEMISTRY_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a/study?top=P-CHEM",	"substance":"Ag NM-300K 10 w/w%, <20 nm, 4% w/w% each of Polyoxyethylene Glycerol Trioleate and Polyoxyethylene (20) Sorbitan mono-Laurat (Tween 20).",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"JRC SOP + https://doi.org/10.1002/sia.740130409",	"publicname":"NM-300K",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.06. Nanomaterial zeta potential",	"endpoint":"ZETA_POTENTIAL_SECTION",
	"count":10,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ZETA_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a/study?top=P-CHEM",	"substance":"Ag NM-300K 10 w/w%, <20 nm, 4% w/w% each of Polyoxyethylene Glycerol Trioleate and Polyoxyethylene (20) Sorbitan mono-Laurat (Tween 20).",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"UNIVIE",	"protocol":"ELS  ( pH=10),ELS  ( pH=11),ELS  ( pH=3),ELS  ( pH=4),ELS  ( pH=5),ELS  ( pH=6),ELS  ( pH=7),ELS  ( pH=8),ELS  ( pH=9),IsoElectric Point- Zeta potential SOP",	"publicname":"NM-300K",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-605b8dd5-0d8c-30a9-a447-eb7cb73de61a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-a7e5a97c-61e2-329b-97c7-5708d7df3822/study?top=P-CHEM",	"substance":"NM-300",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"KRISS",	"protocol":"In-house KRISS SOP which was established according to suggested requirements in ISO 17025 (General requirements for the competence of testing and calibration laboratories), and technically to JIS K 0131 (General rules for X-ray diffractometric analysis)",	"publicname":"NM-300",	"substancetype":"NPO_1892",	"substance_uuid":"GRCS-a7e5a97c-61e2-329b-97c7-5708d7df3822",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-6bff066f-afc8-3ef1-8197-56784a272907/study?top=P-CHEM",	"substance":"DPP coated (red)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"DPP_coated (red)",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-6bff066f-afc8-3ef1-8197-56784a272907",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.02. Nanomaterial crystalline phase",	"endpoint":"CRYSTALLINE_PHASE_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=CRYSTALLINE_PHASE_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-39dc245f-0081-3309-bee4-f24bf38e2866/study?top=P-CHEM",	"substance":"DPP non-nano (red)",	"reference":"https://www.doi.org/10.1016/j.impact.2022.100410",	"provider":"JRC",	"protocol":"!!! SOP MISSING !!!",	"publicname":"DPP_non nano (red)",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-39dc245f-0081-3309-bee4-f24bf38e2866",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":3,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8ec71f19-0345-3652-b89e-af88b4d74745/study?top=P-CHEM",	"substance":"E171",	"reference":"GRACIOUS WP4",	"provider":"BASF,IIT",	"protocol":"NANoREG D2.08 SOP 06,modified draft OECD TG",	"publicname":"E171",	"substancetype":"CHEBI_51050",	"substance_uuid":"GRCS-8ec71f19-0345-3652-b89e-af88b4d74745",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-c4b75fa8-8c39-34ce-936f-51c9e78991f7/study?top=P-CHEM",	"substance":"NM-101 TiO2 6 nm",	"reference":"GRACIOUS WP4",	"provider":"IIT",	"protocol":"NANoREG D2.08 SOP 06",	"publicname":"JRCNM01001a",	"substancetype":"CHEBI_51050",	"substance_uuid":"GRCS-c4b75fa8-8c39-34ce-936f-51c9e78991f7",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-015ca283-2224-3dc1-b9c0-399652030909/study?top=P-CHEM",	"substance":"NM-103 TiO2 24.7 nm",	"reference":"GRACIOUS WP4",	"provider":"IIT",	"protocol":"NANoREG D2.08 SOP 06",	"publicname":"JRCNM01003a",	"substancetype":"CHEBI_51050",	"substance_uuid":"GRCS-015ca283-2224-3dc1-b9c0-399652030909",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-868b5866-c026-30c9-9d5d-b2d88f8e9a0f/study?top=P-CHEM",	"substance":"NM-111 Zinc Oxide coated triethoxycaprylsilane",	"reference":"GRACIOUS WP4",	"provider":"BASF,IIT",	"protocol":"NANoREG D2.08 SOP 06,modified draft OECD TG",	"publicname":"JRCNM01101a",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-868b5866-c026-30c9-9d5d-b2d88f8e9a0f",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-4aca4261-6acb-3760-a2ec-ae33e2a5b98e/study?top=P-CHEM",	"substance":"NM-203 Synthetic Amorphous Silica PY-A-04",	"reference":"GRACIOUS WP4",	"provider":"IIT",	"protocol":"NANoREG D2.08 SOP 06",	"publicname":"JRCNM02003a",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-4aca4261-6acb-3760-a2ec-ae33e2a5b98e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-35aa05b0-9db0-382e-a2b3-0b226f4eb03b/study?top=P-CHEM",	"substance":"MCM60",	"reference":"GRACIOUS WP4",	"provider":"IIT",	"protocol":"NANoREG D2.08 SOP 06",	"publicname":"MCM60",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-35aa05b0-9db0-382e-a2b3-0b226f4eb03b",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-037ed741-3cae-3bba-84b7-8009f2783447/study?top=P-CHEM",	"substance":"MCM170",	"reference":"GRACIOUS WP4",	"provider":"IIT",	"protocol":"NANoREG D2.08 SOP 06",	"publicname":"MCM170",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-037ed741-3cae-3bba-84b7-8009f2783447",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-be7f1f69-712c-3bc9-abff-2ba399fc3fa3/study?top=P-CHEM",	"substance":"NM-211 Cerium (IV) Oxide precipitated, uncoated, cubic",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"JRCNM02101a",	"substancetype":"ENM_9000006",	"substance_uuid":"GRCS-be7f1f69-712c-3bc9-abff-2ba399fc3fa3",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-f9b1fd7b-8ebe-38db-9547-19cb73a95eed/study?top=P-CHEM",	"substance":"NM-105 TiO2 23.4 nm",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"JRCNM01005a",	"substancetype":"CHEBI_51050",	"substance_uuid":"GRCS-f9b1fd7b-8ebe-38db-9547-19cb73a95eed",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-9b48bf24-19c0-3592-813f-1a63564451a1/study?top=P-CHEM",	"substance":"Pigment Yellow 110 nano",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"PIGMENT YELLOW 110 NANO",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-9b48bf24-19c0-3592-813f-1a63564451a1",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-6c4b10b4-f78b-3cc1-b338-5922bc9cbee8/study?top=P-CHEM",	"substance":"Pigment Yellow 110 non-nano",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"PIGMENT YELLOW 110 NON-NANO",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-6c4b10b4-f78b-3cc1-b338-5922bc9cbee8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-b6bf046d-1234-346e-b634-0e7094f85e0b/study?top=P-CHEM",	"substance":"Pigment Yellow 62 ",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"PIGMENT YELLOW 62",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-b6bf046d-1234-346e-b634-0e7094f85e0b",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-2e8ec294-6722-3db9-bfd0-019e4c2de983/study?top=P-CHEM",	"substance":"Pigment Yellow 168 ",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"PIGMENT YELLOW 168",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-2e8ec294-6722-3db9-bfd0-019e4c2de983",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-15612274-400a-3731-b2d2-842a67a91d2b/study?top=P-CHEM",	"substance":"DQ12",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"DQ12",	"substancetype":"CHEBI_46727",	"substance_uuid":"GRCS-15612274-400a-3731-b2d2-842a67a91d2b",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-8d407f48-bbbd-349b-accf-8db53e3e79d3/study?top=P-CHEM",	"substance":"SiO2 amorph",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"SIO2 AMORPH",	"substancetype":"NPO_1373",	"substance_uuid":"GRCS-8d407f48-bbbd-349b-accf-8db53e3e79d3",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-af22403f-fb84-3ef9-9894-9c4b7ec2a710/study?top=P-CHEM",	"substance":"NM-100 TiO2 50-150 nm",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"JRCNM01000a",	"substancetype":"CHEBI_51050",	"substance_uuid":"GRCS-af22403f-fb84-3ef9-9894-9c4b7ec2a710",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.8. Water solubility",	"endpoint":"PC_WATER_SOL_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=PC_WATER_SOL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-dde902e5-7bc2-3827-ae5b-2ca20e8068e6/study?top=P-CHEM",	"substance":"NM-113 Zinc Oxide",	"reference":"GRACIOUS WP4",	"provider":"BASF",	"protocol":"modified draft OECD TG",	"publicname":"NM-113",	"substancetype":"NPO_1542",	"substance_uuid":"GRCS-dde902e5-7bc2-3827-ae5b-2ca20e8068e6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":14,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5256998e-7613-3908-809f-0475f6ad291a/study?top=P-CHEM",	"substance":"CuO",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,BfR,HWU,IOM,NRCWE,RIVM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"CuO",	"substancetype":"NPO_1544",	"substance_uuid":"GRCS-5256998e-7613-3908-809f-0475f6ad291a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000037. Oxidative Stress",	"endpoint":"ENM_0000037_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000037_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5256998e-7613-3908-809f-0475f6ad291a/study?top=TOX",	"substance":"CuO",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"activation of Nrf2 antioxidant response pathway",	"publicname":"CuO",	"substancetype":"NPO_1544",	"substance_uuid":"GRCS-5256998e-7613-3908-809f-0475f6ad291a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000068. Cell Viability",	"endpoint":"ENM_0000068_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000068_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5256998e-7613-3908-809f-0475f6ad291a/study?top=TOX",	"substance":"CuO",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"NRU,WST-1",	"publicname":"CuO",	"substancetype":"NPO_1544",	"substance_uuid":"GRCS-5256998e-7613-3908-809f-0475f6ad291a",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":12,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-60ed2a3e-e12d-3ffe-a251-56168cdffcfb/study?top=P-CHEM",	"substance":"Mn2O3",	"reference":"GRACIOUS D5.3",	"provider":"BfR,HWU,IOM,NRCWE,RIVM",	"protocol":"ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"MN2O3",	"substancetype":"ENM_9000073",	"substance_uuid":"GRCS-60ed2a3e-e12d-3ffe-a251-56168cdffcfb",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000037. Oxidative Stress",	"endpoint":"ENM_0000037_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000037_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-60ed2a3e-e12d-3ffe-a251-56168cdffcfb/study?top=TOX",	"substance":"Mn2O3",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"activation of Nrf2 antioxidant response pathway",	"publicname":"MN2O3",	"substancetype":"ENM_9000073",	"substance_uuid":"GRCS-60ed2a3e-e12d-3ffe-a251-56168cdffcfb",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000068. Cell Viability",	"endpoint":"ENM_0000068_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000068_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-60ed2a3e-e12d-3ffe-a251-56168cdffcfb/study?top=TOX",	"substance":"Mn2O3",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"NRU,WST-1",	"publicname":"MN2O3",	"substancetype":"ENM_9000073",	"substance_uuid":"GRCS-60ed2a3e-e12d-3ffe-a251-56168cdffcfb",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":11,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-71a8c747-5f91-3686-bf09-f3e5760293e6/study?top=P-CHEM",	"substance":"NPCB",	"reference":"GRACIOUS D5.3",	"provider":"BfR,HWU,IOM,NRCWE,RIVM",	"protocol":"ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"NPCB",	"substancetype":"CHEBI_82297",	"substance_uuid":"GRCS-71a8c747-5f91-3686-bf09-f3e5760293e6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":4,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-5f7ab826-d121-3784-b9c2-1826d194192e/study?top=P-CHEM",	"substance":"Iron(III) oxide-hydroxide",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,IOM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"FeOOH",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-5f7ab826-d121-3784-b9c2-1826d194192e",	"substance_owner":"GRACIOUS"	},
	{
	"value":"4.28.12. Radical formation potential",	"endpoint":"RADICAL_FORMATION_POTENTIAL_SECTION",
	"count":4,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=RADICAL_FORMATION_POTENTIAL_SECTION",
	"subcategory":"P-CHEM",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-be8ae0ee-1942-3087-a729-b0333d01c9a6/study?top=P-CHEM",	"substance":"Fe2O3_larger",	"reference":"GRACIOUS D5.3,https://www.doi.org/10.1016/j.impact.2022.100390",	"provider":"BASF,IOM",	"protocol":"ISO/TS 18827:2017,Journal of Physics: Conf. Series 838 (2017) 012033,ROS/EPR with Tempone-h,SOP developed in Gracious T5.3",	"publicname":"FE2O3_LARGER",	"substancetype":"NPO_1550",	"substance_uuid":"GRCS-be8ae0ee-1942-3087-a729-b0333d01c9a6",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000037. Oxidative Stress",	"endpoint":"ENM_0000037_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000037_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-b83b6078-3e48-3744-bd50-aed8f82f3ce8/study?top=TOX",	"substance":"EGDMA",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"activation of Nrf2 antioxidant response pathway",	"publicname":"EGDMA",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-b83b6078-3e48-3744-bd50-aed8f82f3ce8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000068. Cell Viability",	"endpoint":"ENM_0000068_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000068_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-b83b6078-3e48-3744-bd50-aed8f82f3ce8/study?top=TOX",	"substance":"EGDMA",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"NRU,WST-1",	"publicname":"EGDMA",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-b83b6078-3e48-3744-bd50-aed8f82f3ce8",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000037. Oxidative Stress",	"endpoint":"ENM_0000037_SECTION",
	"count":1,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000037_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-cc0c7df4-562a-3f8a-b189-88eabba551d9/study?top=TOX",	"substance":"TBHQ",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"activation of Nrf2 antioxidant response pathway",	"publicname":"TBHQ",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-cc0c7df4-562a-3f8a-b189-88eabba551d9",	"substance_owner":"GRACIOUS"	},
	{
	"value":"ENM_0000068. Cell Viability",	"endpoint":"ENM_0000068_SECTION",
	"count":2,
	"substancescount":-1,
	"uri":"https://apps.ideaconsult.net/gracious/substance?type=endpointcategory&search=ENM_0000068_SECTION",
	"subcategory":"TOX",	"subcategoryuri":"https://apps.ideaconsult.net/gracious/substance/GRCS-cc0c7df4-562a-3f8a-b189-88eabba551d9/study?top=TOX",	"substance":"TBHQ",	"reference":"WP5-What they do: Human and environmental toxicology",	"provider":"BfR",	"protocol":"NRU,WST-1",	"publicname":"TBHQ",	"substancetype":"CHEBI_59999",	"substance_uuid":"GRCS-cc0c7df4-562a-3f8a-b189-88eabba551d9",	"substance_owner":"GRACIOUS"	}
]
}