Metallosalen covalent organic frameworks for heterogeneous catalysis

IF 24.5 Q1 CHEMISTRY, PHYSICAL Interdisciplinary Materials Pub Date : 2024-01-29 DOI:10.1002/idm2.12140
Wei Zhou, Wei-Qiao Deng, Xing Lu
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Abstract

Metallosalen covalent organic frameworks (M(salen)-COFs) have garnered significant attention as promising candidates for advanced heterogeneous catalysis, including organocatalysis, electrocatalysis, and photocatalysis, due to their unique structural advantages (combining molecules catalysts and crystalline porous materials) and tunable topological network. It is essential to provide a comprehensive overview of emerging designs of M(salen)-COFs and corresponding advances in this field. Herein, this review first summarizes the reported metallolinkers and the synthesis methods of M(salen)-COFs. In addition, the review enumerates the excellent M(salen)-COF based heterogeneous catalysts and discusses the fundamental mechanisms behind the outstanding heterogeneous catalytic performance of M(salen)-COFs. These mechanisms include the pore enrichment effect (enhancing local concentration within porous materials to promote catalytic reactions), the three-in-one strategy (integrating enrichment, reduction, and oxidation sites in one system), and the incorporation of a built-in electric field (implanting a built-in electric field in heterometallic phthalocyanine covalent organic frameworks). Furthermore, this review discusses the challenges and prospects related to M(salen)-COFs in heterogeneous catalysis.

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用于异相催化的金属盐共价有机框架
金属盐共价有机框架(M(salen)-COFs)因其独特的结构优势(结合了分子催化剂和结晶多孔材料)和可调拓扑网络,作为先进异相催化(包括有机催化、电催化和光催化)的有前途候选材料而备受关注。全面概述 M(salen)-COFs 的新兴设计以及该领域的相应进展至关重要。在此,本综述首先总结了已报道的金属连接体和 M(salen)-COFs 的合成方法。此外,综述还列举了基于 M(salen)-COF 的优秀异相催化剂,并讨论了 M(salen)-COFs 杰出异相催化性能背后的基本机制。这些机制包括孔富集效应(提高多孔材料的局部浓度以促进催化反应)、三合一策略(将富集、还原和氧化位点整合在一个体系中)以及内置电场(在异金属酞菁共价有机框架中植入内置电场)。此外,本综述还讨论了与 M(salen)-COFs 在异相催化中的应用有关的挑战和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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