Post-synthetic modifications of metal–organic cages

IF 38.1 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Jinjin Liu, Zhifang Wang, Peng Cheng, Michael J. Zaworotko, Yao Chen, Zhenjie Zhang
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引用次数: 29

Abstract

Metal–organic cages (MOCs) are discrete, supramolecular entities that consist of metal nodes and organic linkers, which can offer solution processability and high porosity. Thereby, their predesigned structures can undergo post-synthetic modifications (PSMs) to introduce new functional groups and properties by modifying the linker, metal node, pore or surface environment. This Review explores current PSM strategies used for MOCs, including covalent, coordination and noncovalent methods. The effects of newly introduced functional groups or generated complexes upon the PSMs of MOCs are also detailed, such as improving structural stability or endowing desired functionalities. The development of the aforementioned design principles has enabled systematic approaches for the development and characterization of families of MOCs and, thereby, provides insight into structure–function relationships that will guide future developments. Metal–organic cages with good solubility, accessible cavities and abundant reactive sites can undergo various post-synthetic modifications to assemble into multidimensional functional materials. This Review explores current post-synthetic modification strategies used for metal–organic cages, including covalent, coordination and noncovalent methods.

Abstract Image

金属有机笼的合成后修饰
金属有机笼(MOCs)是由金属节点和有机连接体组成的离散超分子实体,具有溶液可加工性和高孔隙率。因此,这些预先设计好的结构可以进行合成后修饰(PSM),通过改变连接体、金属节点、孔隙或表面环境来引入新的功能基团和特性。本综述探讨了目前用于 MOC 的 PSM 策略,包括共价、配位和非共价方法。此外,还详细介绍了新引入的功能基团或生成的配合物对 MOC PSM 的影响,如提高结构稳定性或赋予所需的功能。上述设计原则的制定为开发和表征 MOCs 家族提供了系统方法,从而为了解结构与功能的关系提供了洞察力,为未来的开发提供了指导。具有良好溶解性、可利用空腔和丰富反应位点的金属有机笼可以经过各种后合成修饰组装成多维功能材料。本综述探讨了目前用于金属有机笼的合成后修饰策略,包括共价、配位和非共价方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nature reviews. Chemistry
Nature reviews. Chemistry Chemical Engineering-General Chemical Engineering
CiteScore
52.80
自引率
0.80%
发文量
88
期刊介绍: Nature Reviews Chemistry is an online-only journal that publishes Reviews, Perspectives, and Comments on various disciplines within chemistry. The Reviews aim to offer balanced and objective analyses of selected topics, providing clear descriptions of relevant scientific literature. The content is designed to be accessible to recent graduates in any chemistry-related discipline while also offering insights for principal investigators and industry-based research scientists. Additionally, Reviews should provide the authors' perspectives on future directions and opinions regarding the major challenges faced by researchers in the field.
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