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Effect of anode iridium oxide content on the electrochemical performance and resistance to cell reversal potential of polymer electrolyte membrane fuel cells

Authors
Ahn, Chi-YeongKang, Sun YoungChoi, Hyuck JaeKim, Ok-HeeSung, Yung-EunCho, Yong-Hun
Issue Date
19-4월-2021
Publisher
Elsevier BV
Keywords
Polymer electrolyte membrane fuel cell; Cell reversal; Anode; Catalyst; Durability
Citation
International Journal of Hydrogen Energy, v.46, no.27, pp 14713 - 14723
Pages
11
Journal Title
International Journal of Hydrogen Energy
Volume
46
Number
27
Start Page
14713
End Page
14723
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/1926
DOI
10.1016/j.ijhydene.2021.01.199
ISSN
0360-3199
1879-3487
Abstract
An ideal polymer electrolyte membrane fuel cell (PEMFC) is one that continuously generates electricity as long as hydrogen and oxygen (or air) are supplied to its anode and cathode, respectively. However, internal and/or external conditions could bring about the degradation of its electrodes, which are composed of nanoparticle catalysts. Particularly, when the hydrogen supply to the anode is disrupted, a reverse voltage is generated. This phenomenon, which seriously degrades the anode catalyst, is referred to as cell reversal. To prevent its occurrence, iridium oxide (IrO2) particles were added to the anode in the membrane-electrode assembly of the PEMFC single-cells. After 100 cell reversal cycles, the single-cell voltage profiles of the anode with Pt/C only and the anodes with Pt/C and various IrO2 contents were obtained. Additionally, the cell reversal-induced degradation phenomenon was also confirmed electrochemically and physically, and the use of anodes with various IrO2 contents was also discussed. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
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Ahn, Chi Yeong
친환경해양개발연구본부 (친환경연료추진연구센터)
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