电催化剂
电合成
材料科学
石墨烯
催化作用
反应性(心理学)
钴
化学工程
析氧
氧化还原
电化学
无机化学
纳米技术
物理化学
化学
电极
有机化学
病理
冶金
工程类
医学
替代医学
作者
Haisheng Gong,Zengxi Wei,Zhichao Gong,Lei Zhu,Gonglan Ye,Minmin Yan,Juncai Dong,Christopher S. Allen,Jianbin Liu,Kang Huang,Rui Liu,Guanchao He,Shuangliang Zhao,Huilong Fei
标识
DOI:10.1002/adfm.202106886
摘要
Abstract Electrochemical H 2 O 2 production through the 2‐electron oxygen reduction reaction (ORR) is a promising alternative to the energy‐intensive anthraquinone process. Herein, by simultaneously regulating the coordination number of the atomically dispersed cobalt sites and the nearby oxygen functional groups via a one‐step microwave thermal shock, a highly selective and active CoNC electrocatalyst for H 2 O 2 electrosynthesis that exhibits a high H 2 O 2 selectivity (91.3%), outstanding mass activity (44.4 A g −1 at 0.65 V), and large kinetic current density (11.3 mA cm −2 at 0.65 V) in 0.1 m KOH is obtained. In strong contrast to the typical CoN 4 moieties for the 4‐electron ORR, the present CoNC catalyst possesses a low‐coordinated CoN 2 configuration and abundant epoxide groups, which work in synergy for promoting the 2‐electron ORR, as demonstrated by a series of control experiments and theoretical simulations. This study may provide an effective avenue to modulating the composition and structure of electrocatalysts at the atomic scale, leading to the development of new electrocatalysts with unprecedented reactivity.
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