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Thin film growth effects on electrical conductivity in entropy stabilized oxides
Submitted by
nnguyen2
on Fri, 05/20/2022 - 12:13
Jacobson V.
,
Diercks D.
,
To B.
,
Zakutayev A.
,
Brennecka G.
. 2021.
Thin film growth effects on electrical conductivity in entropy stabilized oxides
.
Journal of the European Ceramic Society. 41:2617-2624.
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Phase formation of manganese oxide thin films using pulsed laser deposition
Submitted by
nnguyen2
on Fri, 05/13/2022 - 09:41
Garten LM
,
Selvarasu P
,
Perkins J
,
Ginley D
,
Zakutayev A
. 2021.
Phase formation of manganese oxide thin films using pulsed laser deposition
.
Mater. Adv.. 2:303-309.
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Predicting Oxygen Off-Stoichiometry and Hydrogen Incorporation in Complex Perovskite Oxides
Submitted by
nnguyen2
on Thu, 05/12/2022 - 09:22
Millican SL
,
Deml AM
,
Papac M
,
Zakutayev A
,
O’Hayre R
,
Holder AM
,
Musgrave CB
,
Stevanović V
. 2022.
Predicting Oxygen Off-Stoichiometry and Hydrogen Incorporation in Complex Perovskite Oxides
.
Chemistry of Materials. 34:510-518.
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Operational Limits of Redox Metal Oxides Performing Thermochemical Water Splitting
Submitted by
nnguyen2
on Thu, 05/12/2022 - 09:18
Bayon A
,
de la Calle A
,
Stechel EB
,
Muhich C
. 2022.
Operational Limits of Redox Metal Oxides Performing Thermochemical Water Splitting
.
Energy Technology. 10:2100222.
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Reduction Thermodynamics of Sr1−xCexMnO3 and CexSr2−xMnO4 Perovskites for Solar Thermochemical Hydrogen Production
Submitted by
eringle
on Mon, 12/20/2021 - 08:31
Bergeson-Keller A.M
,
Sanders M.D
,
O’Hayre R.P
. 2021.
Reduction Thermodynamics of Sr1−xCexMnO3 and CexSr2−xMnO4 Perovskites for Solar Thermochemical Hydrogen Production
.
Energy Technology.
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Development and testing of a PEM SO2-depolarized electrolyzer and an operating method that prevents sulfur accumulation
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Steimke JL
,
Steeper TJ
,
Colón-Mercado HR
,
Gorensek MB
. 0.
Development and testing of a PEM SO2-depolarized electrolyzer and an operating method that prevents sulfur accumulation
.
International Journal of Hydrogen Energy. 40(39):13281-13294.
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Evaluation of proton-conducting membranes for use in a sulfur dioxide depolarized electrolyzer
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Elvington MC
,
Colon-Mercado H
,
McCatty S
,
Stone SG
,
Hobbs DT
. 0.
Evaluation of proton-conducting membranes for use in a sulfur dioxide depolarized electrolyzer
.
Journal of Power Sources. 195(9):2823-2829.
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Catalyst evaluation for a sulfur dioxide-depolarized electrolyzer
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Colón-Mercado HR
,
Hobbs DT
. 2007.
Catalyst evaluation for a sulfur dioxide-depolarized electrolyzer
.
Electrochemistry Communications. 9(11):2649-2653.
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High-temperature sulfuric acid decomposition over complex metal oxide catalysts
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Ginosar DM
,
Rollins HW
,
Petkovic LM
,
Burch KC
,
Rush MJ
. 0.
High-temperature sulfuric acid decomposition over complex metal oxide catalysts
.
International Journal of Hydrogen Energy. 34(9):4065-4073.
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Catalytic activity of supported metal particles for sulfuric acid decomposition reaction
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Rashkeev SN
,
Ginosar DM
,
Petkovic LM
,
Farrell HH
. 2009.
Catalytic activity of supported metal particles for sulfuric acid decomposition reaction
.
Catalysis Today. 139(4):291-298.
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