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Designed synthesis of double-stage two-dimensional covalent organic frameworks

机译:二维二维共价有机骨架的设计合成

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摘要

Covalent organic frameworks (COFs) are an emerging class of crystalline porous polymers in which organic building blocks are covalently and topologically linked to form extended crystalline polygon structures, constituting a new platform for designing π-electronic porous materials. However, COFs are currently synthesised by a few chemical reactions, limiting the access to and exploration of new structures and properties. The development of new reaction systems that avoid such limitations to expand structural diversity is highly desired. Here we report that COFs can be synthesised via a double-stage connection that polymerises various different building blocks into crystalline polygon architectures, leading to the development of a new type of COFs with enhanced structural complexity and diversity. We show that the double-stage approach not only controls the sequence of building blocks but also allows fine engineering of pore size and shape. This strategy is widely applicable to different polymerisation systems to yield hexagonal, tetragonal and rhombus COFs with predesigned pores and π-arrays.
机译:共价有机骨架(COF)是一类新兴的晶体多孔聚合物,其中有机结构单元通过共价键和拓扑结构共价键连接以形成扩展的晶体多边形结构,从而构成了设计π电子多孔材料的新平台。但是,COF当前是通过一些化学反应合成的,从而限制了对新结构和新特性的获取和探索。迫切需要开发避免这种限制以扩大结构多样性的新反应系统。在这里,我们报告可以通过双级连接合成COF,该双级连接将各种不同的构建基聚合到晶体多边形体系结构中,从而导致开发了具有增强的结构复杂性和多样性的新型COF。我们表明,双阶段方法不仅可以控制结构单元的顺序,而且可以对孔径和形状进行精细设计。该策略可广泛应用于不同的聚合系统,以产生具有预先设计的孔和π阵列的六边形,四边形和菱形COF。

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