Using distribution of relaxation times to separate the impedances in the membrane electrode assembly for high-temperature polymer electrolyte membrane fuel cells
Author:
Funder
Hyundai Motors
Korea Institute of Energy Technology Evaluation and Planning
Publisher
Elsevier BV
Reference42 articles.
1. Additives in proton exchange membranes for low- and high-temperature fuel cell applications: a review;Wong;Int J Hydrogen Energy,2019
2. Neoteric advancements in polybenzimidazole based polymer electrolytes for high-temperature proton exchange membrane fuel cells - a versatile review;Moorth;Int J Hydrogen Energy,2023
3. Analysis of microporous layer characteristics of the anode for high-temperature polymer electrolyte membrane fuel cell;Chun;Int J Hydrogen Energy,2022
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5. A review of oxygen reduction mechanisms for metal-free carbon-based electrocatalysts;Ma;npj Comput Mater,2019
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1. Identification of Degradation Reasons for a CO2 MEA Electrolyzer Using the Distribution of Relaxation Times Analysis;The Journal of Physical Chemistry Letters;2024-08-29
2. High-precision identification of polarization processes of proton exchange membrane fuel cells through relaxation time analysis: Targeted experimental design and verification;Applied Energy;2024-08
3. Durability analysis of polymer electrolyte membrane fuel Cell's gas diffusion layer based on distribution relaxation time analysis: Influence of the presence or absence of a micro-porous layer;International Journal of Hydrogen Energy;2024-06
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