析氧
化学
镍
无机化学
碱性水电解
浸出(土壤学)
电解
循环伏安法
雷尼镍业
非阻塞I/O
氢氧化物
电化学
电解质
催化作用
电极
土壤科学
有机化学
土壤水分
物理化学
生物化学
环境科学
作者
Jieun Kim,Tae Hyun Kim,Chu-Sik Park,Kwangjin Jung,Jaekyung Yoon,Ki Bong Lee,Kyoung-Soo Kang
标识
DOI:10.1016/j.elecom.2023.107601
摘要
We investigated the (de)activation of Raney nickel-iron anodes in various oxygen evolution reaction (OER) environments using accelerated deactivation testing (ADT) under the conditions of on/off voltage control (ADT1), constant current density (ADT2), and cyclic voltammetry (ADT3). ADT1 caused activation under OER conditions by promoting the leaching of residual zinc and thus increasing the electrode surface area and oxygen vacancy content, whereas deactivation was observed under the conditions of the hydrogen evolution reaction(H-ADT1). ADT2 decreased the OER activity by promoting NiO formation and iron leaching, while ADT3 slightly increased the OER activity by favoring the incorporation of iron into the nickel lattice and promoting nickel-iron hydroxide formation. Thus, this work facilitates the design of more efficient and durable Raney nickel–based OER anodes by providing insights into their (de)activation mechanisms.
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