析氧
催化作用
电催化剂
电解水
掺杂剂
氧气
纳米线
化学工程
材料科学
无机化学
氧化物
化学
电解
兴奋剂
纳米技术
电化学
电极
物理化学
工程类
有机化学
电解质
光电子学
作者
Dafeng Zhang,Mengnan Li,Xue Yong,Haoqiang Song,Geoffrey I. N. Waterhouse,Yunfei Yi,Bingjie Xue,Dongliang Zhang,Baozhong Liu,Siyu Lu
标识
DOI:10.1038/s41467-023-38213-1
摘要
Abstract Oxygen evolution reaction catalysts capable of working efficiently in acidic media are highly demanded for the commercialization of proton exchange membrane water electrolysis. Herein, we report a Zn-doped RuO 2 nanowire array electrocatalyst with outstanding catalytic performance for the oxygen evolution reaction under acidic conditions. Overpotentials as low as 173, 304, and 373 mV are achieved at 10, 500, and 1000 mA cm −2 , respectively, with robust stability reaching to 1000 h at 10 mA cm −2 . Experimental and theoretical investigations establish a clear synergistic effect of Zn dopants and oxygen vacancies on regulating the binding configurations of oxygenated adsorbates on the active centers, which then enables an alternative Ru−Zn dual-site oxide path of the reaction. Due to the change of reaction pathways, the energy barrier of rate-determining step is reduced, and the over-oxidation of Ru active sites is alleviated. As a result, the catalytic activity and stability are significantly enhanced.
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