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Proton Exchange Membrane
Self-sustainable protonic ceramic electrochemical cells using a triple conducting electrode for hydrogen and power production
Submitted by
nnguyen2
on Fri, 05/20/2022 - 12:12
Ding H
,
Wu W
,
Jiang C
,
Ding Y
,
Bian W
,
Hu B
,
Singh P
,
Orme CJ
,
Wang L
,
Zhang Y
et al.
. 2020.
Self-sustainable protonic ceramic electrochemical cells using a triple conducting electrode for hydrogen and power production
.
Nature Communications. 11
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A comprehensive modeling method for proton exchange membrane electrolyzer development
Submitted by
nnguyen2
on Thu, 05/12/2022 - 09:40
Ma Z
,
Witteman L
,
Wrubel JA
,
Bender G
. 2021.
A comprehensive modeling method for proton exchange membrane electrolyzer development
.
International Journal of Hydrogen Energy. 46:17627-17643.
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Critical Review—Identifying Critical Gaps for Polymer Electrolyte Water Electrolysis Development
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Babic U
,
Suermann M
,
Büchi FN
,
Gubler L
,
Schmidt TJ
. 2017.
Critical Review—Identifying Critical Gaps for Polymer Electrolyte Water Electrolysis Development
.
Journal of The Electrochemical Society. 164(4):F387-F399.
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Investigations on degradation of the long-term proton exchange membrane water electrolysis stack
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Sun S
,
Shao Z
,
Yu H
,
Li G
,
Yi B
. 0.
Investigations on degradation of the long-term proton exchange membrane water electrolysis stack
.
Journal of Power Sources. 267:515-520.
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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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