耐久性
电解
析氧
电解质
浸出(土壤学)
阳极
碱性水电解
可再生能源
材料科学
电解水
降级(电信)
聚合物电解质膜电解
化学工程
化学
环境科学
电化学
计算机科学
电极
复合材料
工程类
电气工程
电信
物理化学
土壤科学
土壤水分
作者
Reika Suzuki,Keisuke Obata,Yutaka Sasaki,Kiyohiro Adachi,Kazuhiro Takanabe
标识
DOI:10.1002/celc.202500081
摘要
Water electrolysis powered by renewable energy sources is a mature and practical technique to produce green hydrogen. Its production cost is heavily influenced by efficiency and durability, with a particular concern being the durability of anodes for oxygen evolution reaction (OER) in highly oxidative and acidic/alkaline environments at elevated temperatures. Durability during intermittent operations with renewable sources, factoring in on/off cycling, is also a consideration. This study investigates the durability of NiFeO x , one of the most active electrocatalysts in alkaline conditions, under various conditions including industrially relevant conditions: 7 M KOH at 80 °C and 600 mA cm −2 . The results show that on/off operations with extensive potential variation caused severe degradations compared to constant OER operations. However, stability improves slightly with the addition of saturated Fe 3+ ions into the electrolyte, preventing Fe leaching. By dissecting the degradation mechanism step‐by‐step, this study illuminates the limitations and assists in creating strategies for highly durable electrolysis systems.
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