格式化
电化学
催化作用
电解质
合理设计
拉曼光谱
材料科学
离解(化学)
曲面重建
纳米技术
化学工程
选择性
化学
电极
无机化学
物理化学
有机化学
工程类
物理
光学
数学
曲面(拓扑)
几何学
作者
Dazhi Yao,Cheng Tang,Anthony Vasileff,Xing Zhi,Yan Jiao,Shi Zhang Qiao
标识
DOI:10.1002/anie.202104747
摘要
Abstract Monitoring and controlling the reconstruction of materials under working conditions is crucial for the precise identification of active sites, elucidation of reaction mechanisms, and rational design of advanced catalysts. Herein, a Bi‐based metal–organic framework (Bi‐MOF) for electrochemical CO 2 reduction is selected as a case study. In situ Raman spectra combined with ex situ electron microscopy reveal that the intricate reconstruction of the Bi‐MOF can be controlled using two steps: 1) electrolyte‐mediated dissociation and conversion of Bi‐MOF to Bi 2 O 2 CO 3 , and 2) potential‐mediated reduction of Bi 2 O 2 CO 3 to Bi. The intentionally reconstructed Bi catalyst exhibits excellent activity, selectivity, and durability for formate production, and the unsaturated surface Bi atoms formed during reconstruction become the active sites. This work emphasizes the significant impact of pre‐catalyst reconstruction under working conditions and provides insight into the design of highly active and stable electrocatalysts through the regulation of these processes.
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