Xu Zezhao, Ye Yangzhi, Liu Yilan, Liu Huiyu, Jiang Shan
School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China.
Chem Commun (Camb). 2024 Feb 22;60(17):2261-2282. doi: 10.1039/d3cc05091b.
Porous organic cages (POCs) represent a notable category of porous materials, showing remarkable material properties due to their inherent porosity. Unlike extended frameworks which are constructed by strong covalent or coordination bonds, POCs are composed of discrete molecular units held together by weak intermolecular forces. Their structure and chemical traits can be systematically tailored, making them suitable for a range of applications including gas storage and separation, molecular separation and recognition, catalysis, and proton and ion conduction. This review provides a comprehensive overview of POCs, covering their synthesis methods, structure and properties, computational approaches, and applications, serving as a primer for those who are new to the domain. A special emphasis is placed on the growing role of computational methods, highlighting how advanced data-driven techniques and automation are increasingly aiding the rapid exploration and understanding of POCs. We conclude by addressing the prevailing challenges and future prospects in the field.
多孔有机笼(POCs)是一类值得关注的多孔材料,由于其固有的孔隙率而展现出卓越的材料性能。与由强共价键或配位键构建的扩展框架不同,POCs由通过弱分子间力维系在一起的离散分子单元组成。它们的结构和化学特性可以进行系统定制,使其适用于一系列应用,包括气体储存与分离、分子分离与识别、催化以及质子和离子传导。本综述全面概述了POCs,涵盖其合成方法、结构与性能、计算方法以及应用,为该领域的新手提供了入门指南。特别强调了计算方法日益增长的作用,突出了先进的数据驱动技术和自动化如何越来越有助于快速探索和理解POCs。我们通过探讨该领域当前面临的挑战和未来前景来结束本文。