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Experimental studies on the effects of sheet resistance and wettability of catalyst layer on electro-catalytic activities for oxygen evolution reaction in proton exchange membrane electrolysis cells

机译:催化剂层对质子交换膜电解细胞氧气逸出反应电催化活性催化活性的影响的实验研究

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摘要

As the most important part of electrochemical reaction in proton exchange membrane electrolysis cells (PEMECs) for water splitting, oxygen evolution reaction (OER) occurs at the anode catalyst layer (CL). The distribution of the OER site is affected by many factors, such as properties of CL, operation parameters, procedures, etc. To study the effects of properties of CLs on the distribution of OER site on the CL, and consequently affect the performance of PEMECs, CLs with different sheet resistances are tested under different operation conditions. The phenomena of OER on CLs are captured by a high-speed and micro-scale visualization system in-situ and analysed coupled with electrochemical results. The results show that both sheet resistance and wettability of CLs have significant impact on the distribution of the OER site, which can help optimize the design of membrane electrode assembly and improve the operating parameters for electrochemical devices. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:作为用于水分裂的质子交换膜电解细胞(PEMEC)中的电化学反应中最重要的部分,在阳极催化剂层(CL)处发生氧气进化反应(OER)。 OER站点的分布受许多因素的影响,例如CL,操作参数,程序等的属性,以研究CLS属性对CL上的OER站点分布的影响,从而影响PEMECS的性能,在不同的操作条件下测试具有不同薄层电阻的CLS。 CLS上的OER现象由原位的高速和微尺度可视化系统捕获并分析与电化学结果相结合。结果表明,CLS的薄层电阻和润湿性对OER现场的分布产生了重大影响,这有助于优化膜电极组件的设计,并改善电化学装置的操作参数。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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