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Conjugated organic framework with three-dimensionally ordered stable structure and delocalized π clouds

机译:具有三维有序稳定结构和离域π云的共轭有机框架

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摘要

Covalent organic frameworks are a class of crystalline organic porous materials that can utilize π–π-stacking interactions as a driving force for the crystallization of polygonal sheets to form layered frameworks and ordered pores. However, typical examples are chemically unstable and lack intrasheet π-conjugation, thereby significantly limiting their applications. Here we report a chemically stable, electronically conjugated organic framework with topologically designed wire frameworks and open nanochannels, in which the π conjugation-spans the two-dimensional sheets. Our framework permits inborn periodic ordering of conjugated chains in all three dimensions and exhibits a striking combination of properties: chemical stability, extended π-delocalization, ability to host guest molecules and hole mobility. We show that the π-conjugated organic framework is useful for high on-off ratio photoswitches and photovoltaic cells. Therefore, this strategy may constitute a step towards realizing ordered semiconducting porous materials for innovations based on two-dimensionally extended π systems.
机译:共价有机骨架是一类晶体有机多孔材料,可以利用π-π堆积相互作用作为驱动多边形薄板结晶以形成分层骨架和有序孔的动力。然而,典型的例子是化学不稳定的,并且缺乏片内π共轭,从而大大限制了它们的应用。在这里,我们报告了一种化学稳定的,电子共轭的有机骨架,该骨架具有拓扑设计的线骨架和开放的纳米通道,其中π共轭跨度为二维薄片。我们的框架允许共轭链在所有三个维度上固有的周期性排列,并展现出惊人的性能组合:化学稳定性,扩展的π-离域,容纳客体分子的能力和空穴迁移率。我们表明,π共轭有机骨架可用于高开关比率的光电开关和光伏电池。因此,该策略可能构成迈向基于二维扩展π系统的有序半导体多孔材料创新的一步。

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