制氢
共价键
材料科学
催化作用
电子转移
不对称
表征(材料科学)
氢
纳米技术
光化学
化学
电子结构
光催化
水准点(测量)
化学物理
贵金属
工作(物理)
基态
组合化学
氧化还原
金属有机骨架
分解水
金属
还原(数学)
纳米颗粒
对偶(语法数字)
光诱导电子转移
有机合成
立体中心
组分(热力学)
活动站点
过渡金属
作者
Qing Niu,Chentao Luo,Mingfei Yu,Liuyi Li,Yan Yu,Jinhong Bi
摘要
ABSTRACT The development of efficient and cost‐effective alternatives to noble metal cocatalysts for photocatalytic hydrogen evolution remains a significant challenge. Herein, we demonstrate a facile strategy for constructing atomically dispersed dual Cu sites within a covalent organic framework (COF), using molecular carboxylic acids as coordinating ligands. Through in situ spectroscopic characterization and theoretical calculations, we identified a light‐induced dynamic electronic restructuring involving the reduction of one Cu(II) to Cu(I) within the dual‐atom site, generating a mixed‐valence state with asymmetric electronic configuration. This dynamic asymmetry facilitates electron transfer process and optimizes hydrogen intermediate adsorption. Enhanced H 2 generation is achieved, and the performance exceeds that of benchmark Pt cocatalyst. Furthermore, the molecular carboxylic acid‐assisted strategy employed here is successfully extended to improve the H 2 evolution activity of Pt. This work offers an applicable method for constructing dual‐atomic‐site catalysts and provides insights into dynamic active sites in catalysis.
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