析氧
锰
催化作用
无机化学
化学
电解
溶解
氧气
氧化物
电极
材料科学
氧化还原
电解水
原位
金属
化学工程
氧化锰
价(化学)
光谱学
本体电解
电催化剂
吸收光谱法
反应中间体
分解水
氧烷
阳极
作者
Qiuyang Yu,Yong Zhang,Wei Tu,Chao Wang,Haiqing Zhou,Zhangquan Peng,Limin Guo,Junyuan Xu
出处
期刊:Small
[Wiley]
日期:2026-04-16
卷期号:22 (31): e12512-e12512
标识
DOI:10.1002/smll.202512512
摘要
Catalyzing the anodic oxygen evolution reaction (OER) in proton exchange membrane water electrolysis by non-precious metal catalysts represents a promising technique. Recently, manganese oxides have been recognized as one of the most popular materials in this field. However, they often suffer from structural instability caused by obvious manganese dissolution process and the resulting complicated side reactions, which are not well understood but are of great significance for the design and development of manganese-based catalysts. In this work, we have first developed a method based on UV-vis absorption spectroscopy to achieve in situ detection and distinction of different valence states of manganese ions in acidic media. Meanwhile, the interfacial solid-phase structure evolution has been systematically investigated via electron microscopy and spectroscopy techniques under ex situ/in situ conditions. We have successfully captured the parasitic reactions for manganese oxide electrode in both liquid and solid phases from open circuit potential to oxygen evolution potential. Thus, a comprehensive surface reconstruction model for manganese oxide under acidic conditions has been proposed, involving disproportion, redeposition feature, and over-oxidation behaviors. We believe that our work provides in-depth insight into the side reactions and resulting structural instability of manganese-based materials during acidic OER, which could be used for optimization of the catalyst toward oxygen electrocatalysis.
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