析氧
催化作用
石墨烯
钴
氧化物
化学
杂原子
价(化学)
电化学
无机化学
化学工程
材料科学
纳米技术
物理化学
电极
有机化学
戒指(化学)
工程类
作者
Jiahui Yang,Guoliang Dai,Wenjuan Song,Poe Ei Phyu Win,Jiong Wang,Xin Wang
标识
DOI:10.1002/ange.202416274
摘要
Abstract Heterogeneous molecular cobalt (Co) sites represent one type of classical catalytic sites for electrochemical oxygen evolution reaction (OER) in alkaline solutions. There are dynamic equilibriums between Co 2+ , Co 3+ and Co 4+ states coupling with OH − /H + interaction before and during the OER event. Since the emergence of Co 2+ sites is detrimental to the OER cycle, the stabilization of high‐valent Co sites to shift away from the equilibrium becomes critical and is proposed as a new strategy to enhance OER. Herein, phosphorus (P) atoms were doped into reduced graphene oxide to link molecular Co 2+ acetylacetonate toward synthesizing a novel heterogeneous molecular catalyst. By increasing the oxidation states of P heteroatoms, the linked Co sites were spontaneously oxidized from 2+ to 3+ states in a KOH solution through OH − ions coupling at an open circuit condition. With excluding the Co 2+ sites, the as‐derived Co sites with 3+ initial states exhibited intrinsically high OER activity, validating the effectiveness of the strategy of stabilizing high valence Co sites.
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