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Polyimide covalent organic frameworks bearing star-shaped electron-deficient polycyclic aromatic hydrocarbon building blocks: molecular innovations for energy conversion and storage

机译:带有星形缺电子多环芳烃结构单元的聚酰亚胺共价有机框架:用于能量转换和储存的分子创新

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Polyimide covalent organic frameworks (PI-COFs) are outstanding functional materials for electrochemical energy conversion and storage owing to their integrated advantages of the high electroactive feature of polyimides and the periodic porous structure of COFs. Nevertheless, only anhydride monomers with C2 symmetry are generally used, and limited selectivity of electron-deficient monomers has become a major obstacle in the development of materials. The introduction of polycyclic aromatic hydrocarbons (PAHs) is a very effective method to regulate the structure–activity relationship of PI-COFs due to their excellent stability and electrical properties. Over the past two years, various star-shaped electron-deficient PAH building blocks possessing different compositions and topologies have been successfully fabricated, greatly improving the monomer selectivity and electrochemical performances of PI-COFs. This paper systematically summarizes the recent highlights in PI-COFs based on these building blocks. Firstly, the preparation of anhydride (or phthalic acid) monomers and PI-COFs related to different star-shaped PAHs is presented. Secondly, the applications of these PI-COFs in energy conversion and storage and the corresponding factors influencing their performance are discussed in detail. Finally, the future development of this meaningful field is briefly proposed.
机译:聚酰亚胺共价有机框架 (PI-COFs) 因其聚酰亚胺的高电活性特性和 COF 的周期性多孔结构的综合优势,是电化学能量转换和存储的出色功能材料。然而,通常只使用具有 C2 对称性的酸酐单体,并且缺电子单体的有限选择性已成为材料开发的主要障碍。由于其优异的稳定性和电学性能,多环芳烃 (PAHs) 的引入是调节 PI-COF 构效关系的一种非常有效的方法。在过去的两年里,已经成功制备了具有不同组成和拓扑结构的各种星形缺电子多环芳烃构建单元,大大提高了 PI-COF 的单体选择性和电化学性能。本文基于这些构建模块系统地总结了 PI-COF 中的最新亮点。首先,介绍了与不同星形 PAHs 相关的酸酐(或邻苯二甲酸)单体和 PI-COF 的制备。其次,详细讨论了这些 PI-COF 在能量转换和存储中的应用以及影响其性能的相应因素。最后,简要提出了这一有意义领域的未来发展。

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