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金属有机框架内的主体分子:主体@金属有机框架和客体@主体@金属有机框架(套娃)材料。

Host molecules inside metal-organic frameworks: host@MOF and guest@host@MOF (Matrjoschka) materials.

作者信息

Wu Qiao, Liang Jun, Wang Dan, Wang Ruihu, Janiak Christoph

机构信息

School of Chemical Engineering and Technology, Hebei University of Technology, 300401 Tianjin, China.

State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences Fuzhou, Fujian 350002, China.

出版信息

Chem Soc Rev. 2025 Jan 20;54(2):601-622. doi: 10.1039/d4cs00371c.

Abstract

The controllable encapsulation of host molecules (such as porphyrin, phthalocyanine, crown ether, calixarene or cucurbituril organic macrocycles, cages, metal-organic polyhedrons and enzymes) into the pores of metal-organic frameworks (MOFs) to form host-in-host (host@MOF) materials has attracted increasing research interest in various fields. These host@MOF materials combine the merits of MOFs as a host matrix and functional host molecules to exhibit synergistic functionalities for the formation of guest@host@MOF materials in sorption and separation, ion capture, catalysis, proton/ion conduction and biosensors. (This guest@host@MOF construction is reminiscent of Russian (Matrjoschka) dolls which are nested dolls of decreasing size placed one inside another.) In this tutorial review, the advantages of MOFs as a host matrix are presented; the encapsulation approaches and general important considerations for the preparation of host@MOF materials are introduced. The state-of-the-art examples of these materials based on different host molecules are shown, and representative applications and general characterization of these materials are discussed. This review will guide researchers attempting to design functional host@MOF and guest@host@MOF materials for various applications.

摘要

将主体分子(如卟啉、酞菁、冠醚、杯芳烃或葫芦脲等有机大环化合物、笼状化合物、金属有机多面体和酶)可控地封装到金属有机框架(MOF)的孔中,以形成主-主(host@MOF)材料,这在各个领域引起了越来越多的研究兴趣。这些host@MOF材料结合了MOF作为主体基质和功能性主体分子的优点,在吸附与分离、离子捕获、催化、质子/离子传导和生物传感器等方面,展现出协同功能以形成客体@主体@MOF材料。(这种客体@主体@MOF结构让人联想到俄罗斯套娃,即一个套一个、尺寸逐渐减小的嵌套玩偶。)在本教程综述中,介绍了MOF作为主体基质的优点;介绍了制备host@MOF材料的封装方法和一般重要注意事项。展示了基于不同主体分子的这些材料的最新实例,并讨论了这些材料的代表性应用和一般表征。本综述将指导研究人员尝试设计用于各种应用的功能性host@MOF和客体@主体@MOF材料。

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