塔菲尔方程
电催化剂
析氧
催化作用
氧气
电化学
金属
化学
钴
无机化学
镍
活性氧
物理化学
有机化学
电极
生物化学
作者
Qu Jiang,Sihong Wang,Chaoran Zhang,Ziyang Sheng,Haoyue Zhang,Ruohan Feng,Yuanman Ni,Xiaoan Tang,Yichuan Gu,Xinhong Zhou,Seunghwa Lee,Di Zhang,Fang Song
标识
DOI:10.1038/s41467-023-42646-z
摘要
Abstract Iron is an extraordinary promoter to impose nickel/cobalt (hydr)oxides as the most active oxygen evolution reaction catalysts, whereas the synergistic effect is actively debated. Here, we unveil that active oxygen species mediate a strong electrochemical interaction between iron oxides (FeO x H y ) and the supporting metal oxyhydroxides. Our survey on the electrochemical behavior of nine supporting metal oxyhydroxides (M(O)OH) uncovers that FeO x H y synergistically promotes substrates that can produce active oxygen species exclusively. Tafel slopes correlate with the presence and kind of oxygen species. Moreover, the oxygen evolution reaction onset potentials of FeO x H y @M(O)OH coincide with the emerging potentials of active oxygen species, whereas large potential gaps are present for intact M(O)OH. Chemical probe experiments suggest that active oxygen species could act as proton acceptors and/or mediators for proton transfer and/or diffusion in cooperative catalysis. This discovery offers a new insight to understand the synergistic catalysis of Fe-based oxygen evolution reaction electrocatalysts.
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