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A Wavy Two-Dimensional Covalent Organic Framework from Core-Twisted Polycyclic Aromatic Hydrocarbons

机译:扭曲的多环芳烃的波浪状二维共价有机骨架

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A high degree of crystallinity is an essential aspect in two-dimensional covalent organic frameworks, as many properties depend strongly on the structural arrangement of the different layers and their constituents. We introduce herein a new design strategy based on core-twisted polycyclic aromatic hydrocarbon as rigid nodes that give rise to a two-dimensional covalent organic framework with a wavy honeycomb (chairlike) lattice. The concave-convex self-complementarity of the wavy two-dimensional lattice guides the stacking of framework layers into a highly stable and ordered covalent organic framework that allows a full 3D analysis by transmission electron microscopy revealing its chairlike honeycomb facets and aligned mesoporous channels. Remarkably, the waviness of the framework does not disrupt the interlayer pi-pi stacking that shows charge transporting properties similar to those of planar covalent organic frameworks. The implementation of core-twisted aromatics as building blocks for covalent organic frameworks brings new possibilities in the design of highly ordered organic materials.
机译:高度的结晶度是二维共价有机骨架中的重要方面,因为许多特性强烈取决于不同层及其成分的结构排列。我们在此介绍一种基于芯绞多环芳烃作为刚性节点的新设计策略,该策略会产生带有波浪状蜂窝(椅状)晶格的二维共价有机骨架。波浪形二维晶格的凹凸自互补性将框架层的堆叠引导到高度稳定且有序的共价有机框架中,该框架允许通过透射电子显微镜进行完整的3D分析,揭示其椅状蜂窝状小面和对齐的中孔通道。值得注意的是,框架的波纹度不会破坏层间pi-pi堆叠,该堆叠显示出类似于平面共价有机框架的电荷传输性质。核心双环芳族化合物作为共价有机框架的基础材料的实施为高度有序的有机材料设计带来了新的可能性。

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