过电位
催化作用
析氧
化学
吸附
氧化物
氧气
电池(电)
选择性
化学工程
无机化学
化学物理
材料科学
纳米技术
物理化学
电化学
电极
热力学
有机化学
功率(物理)
物理
工程类
作者
Xiaobo Zheng,Jiarui Yang,Zhifeng Xu,Qishun Wang,Jiabin Wu,Erhuan Zhang,Shixue Dou,Wenping Sun,Dingsheng Wang,Yadong Li
标识
DOI:10.1002/ange.202205946
摘要
Abstract Manipulating the coordination environment of the active center via anion modulation to reveal tailored activity and selectivity has been widely achieved, especially for carbon‐based single‐atom site catalysts (SACs). However, tuning ligand fields of the active center by single‐site metal cation regulation and identifying the effects on the resulting electronic configuration is seldom explored. Herein, we propose a single‐site Ru cation coordination strategy to engineer the electronic properties by constructing a Ru/LiCoO 2 SAC with atomically dispersed Ru−Co pair sites. Benefitting from the strong electronic coupling between Ru and Co sites, the catalyst possesses an enhanced electrical conductivity and achieves near‐optimal oxygen adsorption energies. Therefore, the optimized catalyst delivers superior oxygen evolution reaction (OER) activity with low overpotential, the high mass activity of 1000 A g oxide −1 at a small overpotential of 335 mV, and excellent long‐term stability. It also exhibits rapid kinetics with superior rate capability and outstanding durability in a zinc–air battery.
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