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通过Knoevenagel缩合的单体自催化活化合成亚乙烯基连接的共价有机框架

Synthesis of Vinylene-Linked Covalent Organic Frameworks by Monomer Self-Catalyzed Activation of Knoevenagel Condensation.

作者信息

Bi Shuai, Meng Fancheng, Wu Dongqing, Zhang Fan

机构信息

School of Chemistry and Chemical Engineering, State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

J Am Chem Soc. 2022 Mar 2;144(8):3653-3659. doi: 10.1021/jacs.1c12902. Epub 2022 Feb 15.

Abstract

Reticular chemistry based on thermodynamically controlled linking modes and numerous organic building blocks has constituted versatile crystalline frameworks in molecular-level precision. However, vinylene-linked covalent organic frameworks (COFs) are still quite far from flexible tailoring in either their structures or topologies, due to the lack of monomers with sufficient activities. Herein, we establish a strategy to synthesize vinylene-linked COFs via Knoevenagel condensation between a tetratopic monomer 2,2',6,6'-tetramethyl-4,4'-bipyridine (TMBP) and linear aromatic dialdehydes in a mixed solvent of benzoic anhydride and benzoic acid. Mechanistic investigation suggests that the condensation was promoted by a pyridine self-catalyzed benzoylation upon the cleavage of benzoic anhydride solvent molecules. The layered structures of the resultant COFs are highly crystallized into orthorhombic lattices with vertically aligned AA stacking modes, delivering high surface areas up to 1560 m g. The π-extended conjugated skeletons comprising -bipyridyl units and vinylene linkages endow these COFs with substantial semiconducting properties, releasing visible-light-stimulated catalytic activity in water-splitting hydrogen evolution with a rate as high as 3230 μmol g h.

摘要

基于热力学控制的连接模式和众多有机结构单元的网状化学已在分子水平精度上构建了多功能晶体框架。然而,由于缺乏具有足够活性的单体,亚乙烯基连接的共价有机框架(COF)在结构或拓扑方面仍远未实现灵活剪裁。在此,我们建立了一种策略,通过四官能团单体2,2',6,6'-四甲基-4,4'-联吡啶(TMBP)与线性芳族二醛在苯甲酸酐和苯甲酸的混合溶剂中进行Knoevenagel缩合反应来合成亚乙烯基连接的COF。机理研究表明,苯甲酸酐溶剂分子裂解时,吡啶自催化的苯甲酰化促进了缩合反应。所得COF的层状结构高度结晶为具有垂直排列的AA堆积模式的数据正交晶格,提供高达1560 m g的高比表面积。由联吡啶单元和亚乙烯基连接组成的π-扩展共轭骨架赋予这些COF显著的半导体性质,在光催化析氢反应中释放出可见光激发的催化活性,速率高达3230 μmol g h。

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