共轭体系
共价有机骨架
共价键
化学
离域电子
催化作用
光化学
单体
组合化学
二胺
星团(航天器)
甲酸
金属有机骨架
铜
有机化学
聚合物
吸附
计算机科学
程序设计语言
作者
Man Dong,Qingqing Pan,Fanfei Meng,Xiaohui Yao,Siqi You,Guo‐Gang Shan,Chunyi Sun,Xin‐Long Wang,Zhong‐Min Su
标识
DOI:10.1016/j.jcis.2024.02.129
摘要
Sunlight-driven CO2 reduction to value-added chemicals is an effective strategy to promote carbon recycling. The exploration of catalysts with efficient charge separation is crucially important for highly efficient CO2 photoreduction. In this work, the preparation of metal-cluster-based covalent organic framework (CuABD) integrated features from both metal organic frameworks (MOFs) and covalent organic frameworks (COFs) through the condensation of diamines and functionalized trinuclear copper clusters demonstrate a thoughtful design strategy. The reported yield of 1.3 mmol g−1 h−1 for formic acid (HCOOH) under simulated solar irradiation is impressive, surpassing the performance of many COF- and MOF-based catalysts previously reported. Compared to its isomorphic metal-free structure (named BDFTD) and bare trinuclear Cu cluster which present extremely poor catalytic activities, CuABD displays remarkably enhanced CO2 reduction activity. Experimental and theoretical investigations reveal that the efficient charge transfer between diamine monomer and cyclic trinuclear copper (I) units, and the electron delocalization of the π-conjugated framework are responsible for the appealing catalytic performance. In summary, the work presents a well-structured and scientifically sound exploration of a metal-cluster-based covalent organic framework for efficient CO2 reduction under sunlight.
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