Uniformity, Performance, and Durability of Roll-to-Roll-Coated Iridium Oxide Electrolyzer Catalyst Layers
Resources
37 resources available
-
Steady-shear rheometry of the 10 wt% IrO2 catalyst ink
APPLICATION/OCTET-STREAM -
Stead-shear rheometry of the 20 wt% IrO2 catalyst ink
APPLICATION/OCTET-STREAM -
Steady-shear rheometry measurements of the 30 wt% IrO2 catalyst ink
APPLICATION/OCTET-STREAM -
High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling Anode Coating Method: Gravure Anode Loading: 0.2 mgIr/cm2 Magnification: 19.9kx
9KX -
High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling Anode Coating Method: Gravure Anode Loading: 0.2 mgIr/cm2 Magnification: 4.96kx
96KX -
High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling Anode Coating Method: Gravure Anode Loading: 0.4 mgIr/cm2 Magnification: 19.9kx
9KX -
High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling Anode Coating Method: Gravure Anode Loading: 0.4 mgIr/cm2 Magnification: 4.96kx
96KX -
Cross sectional scanning electron microscopy image of anode catalyst layer decal Coating Method: Gravure Ink Concentration: 10 wt% IrO2 Catalyst Layer Loading: 0.11 mgIr/cm2
APPLICATION/OCTET-STREAM -
Cross sectional scanning electron microscopy image of anode catalyst layer decal Coating Method: Gravure Ink Concentration: 20 wt% IrO2 Catalyst Layer Loading: 0.34 mgIr/cm2
APPLICATION/OCTET-STREAM -
Cross sectional scanning electron microscopy image of anode catalyst layer decal Coating Method: Gravure Ink Concentration: 30 wt% IrO2 Catalyst Layer Loading: 0.55 mgIr/cm2
APPLICATION/OCTET-STREAM -
Cross sectional scanning electron microscopy image of anode catalyst layer decal Coating Method: Slot die Ink Concentration: 10 wt% IrO2 Catalyst Layer Loading: 0.08 mgIr/cm2
APPLICATION/OCTET-STREAM -
Cross sectional scanning electron microscopy image of anode catalyst layer decal Coating Method: Slot die Ink Concentration: 20 wt% IrO2 Catalyst Layer Loading: 0.37 mgIr/cm2
APPLICATION/OCTET-STREAM -
Cross sectional scanning electron microscopy image of anode catalyst layer decal Coating Method: Slot die Ink Concentration: 30 wt% IrO2 Catalyst Layer Loading: 0.64 mgIr/cm2
APPLICATION/OCTET-STREAM -
High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling Anode Coating Method: Spray Anode Loading: 0.2 mgIr/cm2 Magnification: 19.9kx
9KX -
High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling Anode Coating Method: Spray Anode Loading: 0.2 mgIr/cm2 Magnification: 4.96kx
96KX -
High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling Anode Coating Method: Spray Anode Loading: 0.4 mgIr/cm2 Magnification: 19.9kx
9KX -
High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling Anode Coating Method: Spray Anode Loading: 0.4 mgIr/cm2 Magnification: 4.96kx
96KX -
Polarization curve measurements of MEAs as a function of coating method, catalyst ink concentration, and catalyst layer loading. Initial performance only
INITIAL PERFORMANCE ONLY -
Polarization curves for gravure and spray coated catalyst layers measured before and after voltage cycling
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Gravure Catalyst Ink Concentration Catalyst Layer Loading: 0.11 mgIr/cm2 Magnification: 10,000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Gravure Catalyst Ink Concentration: 10 wt% IrO2 Catalyst Layer Loading: 0.11 mgIr/cm2 Magnification: 1000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Gravure Catalyst Ink Concentration: 10 wt% IrO2 Catalyst Layer Loading: 0.11 mgIr/cm2 Magnification: 200x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Gravure Catalyst Ink Concentration: 20 wt% IrO2 Catalyst Layer Loading: 0.34 mgIr/cm2 Magnification: 10,000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Gravure Catalyst Ink Concentration: 20 wt% IrO2 Catalyst Layer Loading: 0.34 mgIr/cm2 Magnification: 1000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Gravure Catalyst Ink Concentration: 20 wt% IrO2 Catalyst Layer Loading: 0.34 mgIr/cm2 Magnification: 200x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Gravure Catalyst Ink Concentration: 30 wt% IrO2 Catalyst Layer Loading: 0.55 mgIr/cm2 Magnification: 10,000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Gravure Catalyst Ink Concentration: 30 wt% IrO2 Catalyst Layer Loading: 0.55 mgIr/cm2 Magnification: 1000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Gravure Catalyst Ink Concentration: 30 wt% IrO2 Catalyst Layer Loading: 0.55 mgIr/cm2 Magnification: 200x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Slot Die Catalyst Ink Concentration: 10 wt% IrO2 Catalyst Layer Loading: 0.08 mgIr/cm2 Magnification: 10000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Slot Die Catalyst Ink Concentration: 10 wt% IrO2 Catalyst Layer Loading: 0.08 mgIr/cm2 Magnification: 1000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Slot Die Catalyst Ink Concentration: 10 wt% IrO2 Catalyst Layer Loading: 0.08 mgIr/cm2 Magnification: 200x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Slot Die Catalyst Ink Concentration: 20 wt% IrO2 Catalyst Layer Loading: 0.37 mgIr/cm2 Magnification: 10,000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Slot Die Catalyst Ink Concentration: 20 wt% IrO2 Catalyst Layer Loading: 0.37 mgIr/cm2 Magnification: 1000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Slot Die Catalyst Ink Concentration: 20 wt% IrO2 Catalyst Layer Loading: 0.37 mgIr/cm2 Magnification: 200x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Slot Die Catalyst Ink Concentration: 30 wt% IrO2 Catalyst Layer Loading: 0.64 mgIr/cm2 Magnification: 10,000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Slot Die Catalyst Ink Concentration: 30 wt% IrO2 Catalyst Layer Loading: 0.64 mgIr/cm2 Magnification: 1,000x
APPLICATION/OCTET-STREAM -
Top down scanning electron microscopy of catalyst layer decal Coating Method: Slot Die Catalyst Ink Concentration: 30 wt% IrO2 Catalyst Layer Loading: 0.64 mgIr/cm2 Magnification: 200x
APPLICATION/OCTET-STREAM
Complete Metadata
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|---|---|
| accessLevel | public |
| bureauCode |
[
"019:20"
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|
| contactPoint |
{
"fn": "Scott Mauger",
"@type": "vcard:Contact",
"hasEmail": "mailto:Scott.Mauger@nrel.gov"
}
|
| dataQuality |
true
|
| description | Data for "Uniformity, Performance, and Durability of Roll-to-Roll-Coated Iridium Oxide Electrolyzer Catalyst Layers.” This work investigates the use of roll-to-roll coating methods for the production of iridium oxide catalyst layers for proton exchange membrane water electrolyzers. Catalyst layers were produced using two coating methods: slot die and gravure. The film microstructure and uniformity were investigated by electron microscopy. Membrane electrode assembly testing investigated the impacts of coating method and catalyst layer uniformity on electrolyzer performance and durability. |
| distribution |
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"description": "Steady-shear rheometry measurements of the 30 wt% IrO2 catalyst ink "
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"title": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
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"@type": "dcat:Distribution",
"title": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
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"@type": "dcat:Distribution",
"title": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
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},
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"@type": "dcat:Distribution",
"title": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
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{
"@type": "dcat:Distribution",
"title": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Gravure
Ink Concentration: 10 wt% IrO2
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},
{
"@type": "dcat:Distribution",
"title": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Gravure
Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.34 mgIr/cm2",
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"mediaType": "application/octet-stream",
"description": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Gravure
Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.34 mgIr/cm2"
},
{
"@type": "dcat:Distribution",
"title": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Gravure
Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.55 mgIr/cm2",
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"description": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Gravure
Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.55 mgIr/cm2"
},
{
"@type": "dcat:Distribution",
"title": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Slot die
Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.08 mgIr/cm2",
"accessURL": "https://data.nrel.gov/system/files/303/1761148459-SD%2010%20wt%25%200.08mg%20Decal%20TEM_0.tiff",
"mediaType": "application/octet-stream",
"description": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Slot die
Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.08 mgIr/cm2"
},
{
"@type": "dcat:Distribution",
"title": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Slot die
Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.37 mgIr/cm2",
"accessURL": "https://data.nrel.gov/system/files/303/1761148459-SD%2020%20wt%25%200.37mg%20Decal%20TEM_0.tiff",
"mediaType": "application/octet-stream",
"description": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Slot die
Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.37 mgIr/cm2"
},
{
"@type": "dcat:Distribution",
"title": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Slot die
Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.64 mgIr/cm2",
"accessURL": "https://data.nrel.gov/system/files/303/1761148459-SD%2030%20wt%25%200.64mg%20Decal%20TEM_0.tiff",
"mediaType": "application/octet-stream",
"description": "Cross sectional scanning electron microscopy image of anode catalyst layer decal
Coating Method: Slot die
Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.64 mgIr/cm2"
},
{
"@type": "dcat:Distribution",
"title": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
Anode Coating Method: Spray
Anode Loading: 0.2 mgIr/cm2
Magnification: 19.9kx",
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"description": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
Anode Coating Method: Spray
Anode Loading: 0.2 mgIr/cm2
Magnification: 19.9kx"
},
{
"@type": "dcat:Distribution",
"title": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
Anode Coating Method: Spray
Anode Loading: 0.2 mgIr/cm2
Magnification: 4.96kx",
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"description": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
Anode Coating Method: Spray
Anode Loading: 0.2 mgIr/cm2
Magnification: 4.96kx"
},
{
"@type": "dcat:Distribution",
"title": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
Anode Coating Method: Spray
Anode Loading: 0.4 mgIr/cm2
Magnification: 19.9kx",
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"accessURL": "https://data.nrel.gov/system/files/303/1761148459-spray%200.4%2019.9kx.tiff",
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"description": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
Anode Coating Method: Spray
Anode Loading: 0.4 mgIr/cm2
Magnification: 19.9kx"
},
{
"@type": "dcat:Distribution",
"title": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
Anode Coating Method: Spray
Anode Loading: 0.4 mgIr/cm2
Magnification: 4.96kx",
"format": "96kx",
"accessURL": "https://data.nrel.gov/system/files/303/1761148459-spray%200.4%204.96kx.tiff",
"mediaType": "application/octet-stream",
"description": "High-angle annular dark field scanning transmission electron microscopy image of MEA after voltage cycling
Anode Coating Method: Spray
Anode Loading: 0.4 mgIr/cm2
Magnification: 4.96kx"
},
{
"@type": "dcat:Distribution",
"title": "Polarization curve measurements of MEAs as a function of coating method, catalyst ink concentration, and catalyst layer loading. Initial performance only",
"format": " Initial performance only",
"accessURL": "https://data.nrel.gov/system/files/303/1761148633-BOT%20Data_0.xlsx",
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"description": "Polarization curve measurements of MEAs as a function of coating method, catalyst ink concentration, and catalyst layer loading. Initial performance only"
},
{
"@type": "dcat:Distribution",
"title": "Polarization curves for gravure and spray coated catalyst layers measured before and after voltage cycling ",
"accessURL": "https://data.nrel.gov/system/files/303/1761148633-BOT%20vs%20EOT_0.xlsx",
"mediaType": "application/octet-stream",
"description": "Polarization curves for gravure and spray coated catalyst layers measured before and after voltage cycling "
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration
Catalyst Layer Loading: 0.11 mgIr/cm2
Magnification: 10,000x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-G10_10kx.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration
Catalyst Layer Loading: 0.11 mgIr/cm2
Magnification: 10,000x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.11 mgIr/cm2
Magnification: 1000x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-G10_1kx.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.11 mgIr/cm2
Magnification: 1000x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.11 mgIr/cm2
Magnification: 200x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-G10_200x.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.11 mgIr/cm2
Magnification: 200x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.34 mgIr/cm2
Magnification: 10,000x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-G20_10kx.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.34 mgIr/cm2
Magnification: 10,000x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.34 mgIr/cm2
Magnification: 1000x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-G20_1kx.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.34 mgIr/cm2
Magnification: 1000x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.34 mgIr/cm2
Magnification: 200x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-G20_200x.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.34 mgIr/cm2
Magnification: 200x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.55 mgIr/cm2
Magnification: 10,000x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-G30_10kx.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.55 mgIr/cm2
Magnification: 10,000x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.55 mgIr/cm2
Magnification: 1000x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-G30_1kx.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.55 mgIr/cm2
Magnification: 1000x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.55 mgIr/cm2
Magnification: 200x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-G30_200x.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Gravure
Catalyst Ink Concentration: 30 wt% IrO2
Catalyst Layer Loading: 0.55 mgIr/cm2
Magnification: 200x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Slot Die
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.08 mgIr/cm2
Magnification: 10000x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-SD10_10kx.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Slot Die
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.08 mgIr/cm2
Magnification: 10000x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Slot Die
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.08 mgIr/cm2
Magnification: 1000x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-SD10_1kx.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Slot Die
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.08 mgIr/cm2
Magnification: 1000x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Slot Die
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.08 mgIr/cm2
Magnification: 200x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-SD10_200x.tif",
"mediaType": "application/octet-stream",
"description": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Slot Die
Catalyst Ink Concentration: 10 wt% IrO2
Catalyst Layer Loading: 0.08 mgIr/cm2
Magnification: 200x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Slot Die
Catalyst Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.37 mgIr/cm2
Magnification: 10,000x",
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Catalyst Ink Concentration: 20 wt% IrO2
Catalyst Layer Loading: 0.37 mgIr/cm2
Magnification: 10,000x"
},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
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Catalyst Ink Concentration: 20 wt% IrO2
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Magnification: 1000x",
"accessURL": "https://data.nrel.gov/system/files/303/1761161607-SD20_1kx.tif",
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},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
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},
{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
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Catalyst Ink Concentration: 30 wt% IrO2
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{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
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{
"@type": "dcat:Distribution",
"title": "Top down scanning electron microscopy of catalyst layer decal
Coating Method: Slot Die
Catalyst Ink Concentration: 30 wt% IrO2
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Magnification: 200x",
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}
]
|
| identifier | https://data.openei.org/submissions/8567 |
| issued | 2025-11-20T19:48:28Z |
| keyword |
[
"electrolysis",
"roll-to-roll"
]
|
| landingPage | https://data.nrel.gov/submissions/303 |
| license | https://creativecommons.org/licenses/by/4.0/ |
| modified | 2025-11-20T21:02:54Z |
| programCode |
[
"019:007"
]
|
| projectNumber | AOP 10.2.0.502 |
| projectTitle | |
| publisher |
{
"name": "National Renewable Energy Laboratory",
"@type": "org:Organization"
}
|
| title | Uniformity, Performance, and Durability of Roll-to-Roll-Coated Iridium Oxide Electrolyzer Catalyst Layers |