The effect of the geometric area ratio between working and counter PEM electrodes for electrochemical hydrogen reactions

  • Radev, Ivan
  • Cho, Yong-Hun
  • Koutzarov, Krassimir
  • Sung, Yung-Eun
  • Tsotridis, Georgios
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초록

This work reports on the influence of the geometric area ratio between identical electrodes in MEA on their electrochemical performance The difficulties in obtaining half cell electrochemical data of MEAs motivated this research The problem arises from the equality in geometric area of working electrode (WE) and counter electrode (CE) the thin distance between them (PEM thickness in the range 15-200 mu m) the need of a reliable reference electrode similar electrocatalyst loadings but different kinetics and electrocatalyst activities toward oxygen and hydrogen partial reactions Thus half cell results obtained from MEAs may be influenced by the overloaded and under certain conditions degrading CE This is valid especially when the hydrogen oxidation (HOR) or evolution reaction (HER) is of interest and more kinetically limited reactions such as the oxygen reduction reaction (ORB.) or oxygen evolution reaction (OER) proceeds on the CE The influence of the geometric area ratio (GAR) between CE and WE on their electrode performance was established The approach used for reduction of the WE geometric area is via partially covering the electrode by a gas impermeable electron conductive layer The GAR required for avoiding CE influence on WE performance was established toward HOR and HER All tests were performed under dead end operation condition in the EasyTest Cell (C) 2010 Professor T Nejat Veziroglu Published by Elsevier Ltd All rights reserved

키워드

Easy Test CellPEMFCMEAHORHERDEAD-END MODESOLID ELECTROLYTEPROTON CONDUCTORFUEL-CELLPERFORMANCEMEMBRANECATALYSTCATHODEIMPROVEMENTMETHANE
제목
The effect of the geometric area ratio between working and counter PEM electrodes for electrochemical hydrogen reactions
저자
Radev, IvanCho, Yong-HunKoutzarov, KrassimirSung, Yung-EunTsotridis, Georgios
DOI
10.1016/j.ijhydene.2010.08.079
발행일
2010-11
유형
Article
저널명
International Journal of Hydrogen Energy
35
22
페이지
12449 ~ 12453