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A Review of Industrially Developed Components and Operation Conditions for Anion Exchange Membrane Water Electrolysis
Ahyoun Lim, Min Kyung Cho, So Young Lee, Hyoung-Juhn Kim, Sung Jong Yoo, Yung-Eun Sung, Jong Hyun Jang, Hyun S. Park
J. Electrochem. Sci. Technol. 2017;8(4):265-273.   Published online December 31, 2017
DOI: https://doi.org/10.5229/JECST.2017.8.4.265

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A Review of Industrially Developed Components and Operation Conditions for Anion Exchange Membrane Water Electrolysis
Journal of Electrochemical Science and Technology. 2017;8(4):265-273   Crossref logo
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Pressurized operation of anion exchange membrane water electrolysis
Electrochimica Acta. 2019;297:188-196   Crossref logo
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Assessment of the three most developed water electrolysis technologies: Alkaline Water Electrolysis, Proton Exchange Membrane and Solid-Oxide Electrolysis
Materials Today: Proceedings. 2022;   Crossref logo
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Optimizing Cathode Catalyst Layers for Anion Exchange Membrane Water Electrolysis
ECS Meeting Abstracts. 2021;MA2021-02(41):1236-1236   Crossref logo
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Anion Exchange Membrane Water Electrolysis: High‐Efficiency Anion‐Exchange Membrane Water Electrolyzer Enabled by Ternary Layered Double Hydroxide Anode (Small 28/2021)
Small. 2021;17(28):2170147   Crossref logo
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Development of the Anion Exchange Membrane Water Electrolysis
ECS Meeting Abstracts. 2015;MA2015-01(16):1238-1238   Crossref logo
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The Individual Proton-Exchange Membrane Cell and Proton-Exchange Membrane Stack
PEM Water Electrolysis. 2018;75-115   Crossref logo
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Development of High-Surface Area Ni-Alloy Catalysts for Anion Exchange Membrane Water Electrolysis
ECS Meeting Abstracts. 2013;MA2013-01(6):371-371   Crossref logo
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Analyzing and Improving Performance of Anion Exchange Membrane Water Electrolysis
ECS Meeting Abstracts. 2019;MA2019-02(37):1729-1729   Crossref logo
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Novel components in anion exchange membrane water electrolyzers (AEMWE’s): Status, challenges and future needs. A mini review
Electrochemistry Communications. 2021;132:107140   Crossref logo
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