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Self-optimizing, highly surface-active layered metal dichalcogenide catalysts for hydrogen evolution
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Liu Y
,
Wu J
,
Hackenberg KP
,
Y. Wang M
,
Yang Y
,
Keyshar K
,
Gu J
,
Ogitsu T
,
Vajtai R
,
Lou J
et al.
. 2017.
Self-optimizing, highly surface-active layered metal dichalcogenide catalysts for hydrogen evolution
.
Nature Energy. 6:17127.
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Solar Water Oxidation by an InGaN Nanowire Photoanode with a Bandgap of 1.7 eV
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Chu S
,
Vanka S
,
Wang Y
,
Gim J
,
Wang Y
,
Ra Y-H
,
Hovden R
,
Guo H
,
Shih I
,
Mi Z
. 2018.
Solar Water Oxidation by an InGaN Nanowire Photoanode with a Bandgap of 1.7 eV
.
ACS Energy Letters. 3(2):307-314.
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Methods of photoelectrode characterization with high spatial and temporal resolution
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Esposito DV
,
Baxter JB
,
John J
,
Lewis NS
,
Moffat TP
,
Ogitsu T
,
O'Neil GD
,
Pham TAnh
,
A. Talin A
,
Velazquez JM
et al.
. 0.
Methods of photoelectrode characterization with high spatial and temporal resolution
.
Energy & Environmental Science. 8(10):2863-2885.
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Methods for comparing the performance of energy-conversion systems for use in solar fuels and solar electricity generation
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Coridan RH
,
Nielander AC
,
Francis SA
,
McDowell MT
,
Dix V
,
Chatman SM
,
Lewis NS
. 2015.
Methods for comparing the performance of energy-conversion systems for use in solar fuels and solar electricity generation
.
Energy & Environmental Science. 8(10):2886-2901.
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Recommended Best Practices for the Characterization of Storage Properties of Hydrogen Storage Materials | Department of Energy
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Gross KJ
,
K. Carrington R
,
Barcelo S
. 2012.
Recommended Best Practices for the Characterization of Storage Properties of Hydrogen Storage Materials | Department of Energy
.
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Solar-to-hydrogen efficiency: shining light on photoelectrochemical device performance
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Döscher H.
,
Young J.L
,
Geisz J.F
,
Turner J.A
,
Deutsch T.G
. 0.
Solar-to-hydrogen efficiency: shining light on photoelectrochemical device performance
.
Energy & Environmental Science. 9(1):74-80.
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Standardized Benchmarking of Water Splitting Catalysts in a Combined Electrochemical Flow Cell/Inductively Coupled Plasma–Optical Emission Spectrometry (ICP-OES) Setup
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Spanos I
,
Auer AA
,
Neugebauer S
,
Deng X
,
Tüysüz H
,
Schlögl R
. 0.
Standardized Benchmarking of Water Splitting Catalysts in a Combined Electrochemical Flow Cell/Inductively Coupled Plasma–Optical Emission Spectrometry (ICP-OES) Setup
.
ACS Catalysis. 7(6):3768-3778.
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Benchmarking Hydrogen Evolving Reaction and Oxygen Evolving Reaction Electrocatalysts for Solar Water Splitting Devices
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
McCrory CCL
,
Jung S
,
Ferrer IM
,
Chatman SM
,
Peters JC
,
Jaramillo TF
. 2015.
Benchmarking Hydrogen Evolving Reaction and Oxygen Evolving Reaction Electrocatalysts for Solar Water Splitting Devices
.
Journal of the American Chemical Society. 137(13):4347-4357.
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Photoelectrochemical Water Splitting: Standards, Experimental Methods, and Protocols
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Chen Z
,
Dinh H
,
Miller E
. 2013.
Photoelectrochemical Water Splitting: Standards, Experimental Methods, and Protocols
.
SpringerBriefs in Energy.
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Addressing the terawatt challenge: scalability in the supply of chemical elements for renewable energy
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Vesborg PCK
,
Jaramillo TF
. 2012.
Addressing the terawatt challenge: scalability in the supply of chemical elements for renewable energy
.
RSC Advances. 2(21):7933-7947.
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