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Best Practices in Perovskite Solar Cell Efficiency Measurements. Avoiding the Error of Making Bad Cells Look Good
Submitted by
nnguyen2
on Thu, 05/12/2022 - 08:44
Christians J
,
Manser J
,
Kamat P
. 2015.
Best Practices in Perovskite Solar Cell Efficiency Measurements. Avoiding the Error of Making Bad Cells Look Good
.
Journal of Physical Chemistry Letters. 6:852-857.
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Assessing the Oxidative Stability of Anion Exchange Membranes in Oxygen Saturated Aqueous Alkaline Solutions
Submitted by
nnguyen2
on Thu, 05/12/2022 - 08:39
Arges CG
,
Ramani V
,
Wang Z
,
Ouimet RJ
. 0.
Assessing the Oxidative Stability of Anion Exchange Membranes in Oxygen Saturated Aqueous Alkaline Solutions
.
Frontiers in Energy Research. 10
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A Thermogravimetric Temperature-Programmed Thermal Redox Protocol for Rapid Screening of Metal Oxides for Solar Thermochemical Hydrogen Production
Submitted by
nnguyen2
on Thu, 05/12/2022 - 08:34
Sanders M
,
Bergeson-Keller A
,
Coker E
,
O’Hayre R
. 2022.
A Thermogravimetric Temperature-Programmed Thermal Redox Protocol for Rapid Screening of Metal Oxides for Solar Thermochemical Hydrogen Production
.
Frontiers in Energy Research. 10:856943.
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A Computational Framework to Accelerate the Discovery of Perovskites for Solar Thermochemical Hydrogen Production: Identification of Gd Perovskite Oxide Redox Mediators
Submitted by
sara.havig
on Tue, 05/10/2022 - 14:21
Bare ZJL
,
Morelock RJ
,
Musgrave CB
. 2022.
A Computational Framework to Accelerate the Discovery of Perovskites for Solar Thermochemical Hydrogen Production: Identification of Gd Perovskite Oxide Redox Mediators
.
Advanced Functional Materials. :2200201.
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A First-Principles-Based Sub-Lattice Formalism for Predicting Off-Stoichiometry in Materials for Solar Thermochemical Applications: The Example of Ceria
Submitted by
eringle
on Mon, 12/20/2021 - 10:21
G. Gautam S
,
Stechel E.B
,
Carter E.A
. 2020.
A First-Principles-Based Sub-Lattice Formalism for Predicting Off-Stoichiometry in Materials for Solar Thermochemical Applications: The Example of Ceria
.
Advanced Theory and Simulations. 3(9)
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Oxidation Kinetics of Hercynite Spinels for Solar Thermochemical Fuel Production
Submitted by
eringle
on Mon, 12/20/2021 - 10:16
Millican S.L
,
Androshchuk I.
,
Tran J.T
,
Trottier R.M
,
Bayon A.
,
Y. Salik A
,
Idriss H.
,
Musgrave C.B
,
Weimer A.W
. 2020.
Oxidation Kinetics of Hercynite Spinels for Solar Thermochemical Fuel Production
.
Chemical Engineering Journal. 401
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CeTi2O6—A Promising Oxide for Solar Thermochemical Hydrogen Production
Submitted by
eringle
on Mon, 12/20/2021 - 10:10
Naghavi S.S
,
He J.
,
Wolverton C.
. 2020.
CeTi2O6—A Promising Oxide for Solar Thermochemical Hydrogen Production
.
ACS Applied Materials & Interfaces. 12(19):21521-21527.
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Favorable Redox Thermodynamics of SrTi0.5Mn0.5O3−δ in Solar Thermochemical Water Splitting
Submitted by
eringle
on Mon, 12/20/2021 - 09:36
Qian X.
,
He J.
,
Mastronardo E.
,
Baldassarri B.
,
Wolverton C.
,
Haile S.M
. 2020.
Favorable Redox Thermodynamics of SrTi0.5Mn0.5O3−δ in Solar Thermochemical Water Splitting
.
Chemistry of Materials. 32(21):9335-9346.
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Exploring Ca–Ce–M–O (M = 3d Transition Metal) Oxide Perovskites for Solar Thermochemical Applications
Submitted by
eringle
on Mon, 12/20/2021 - 09:32
G. Gautam S
,
Stechel E.B
,
Carter E.A
. 2020.
Exploring Ca–Ce–M–O (M = 3d Transition Metal) Oxide Perovskites for Solar Thermochemical Applications
.
Chemistry of Materials. 32(23):9964-9982.
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High-Throughput Analysis of Materials for Chemical Looping Processes
Submitted by
eringle
on Mon, 12/20/2021 - 09:21
Singstock N.R
,
Bartel C.J
,
Holder A.M
,
Musgrave C.B
. 2020.
High-Throughput Analysis of Materials for Chemical Looping Processes
.
Advanced Energy Materials. 10(27)
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