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合成后修饰:金属有机框架发展的一项支撑技术。

Postsynthetic Modification: An Enabling Technology for the Advancement of Metal-Organic Frameworks.

作者信息

Kalaj Mark, Cohen Seth M

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093-0358, United States.

出版信息

ACS Cent Sci. 2020 Jul 22;6(7):1046-1057. doi: 10.1021/acscentsci.0c00690. Epub 2020 Jul 2.

Abstract

Metal-organic frameworks (MOFs) are a class of porous materials with immense chemical tunability derived from their organic and inorganic building blocks. Presynthetic approaches have been used to construct tailor-made MOFs, but with a rather restricted functional group scope limited by the typical MOF solvothermal synthesis conditions. Postsynthetic modification (PSM) of MOFs has matured into an alternative strategy to broaden the functional group scope of MOFs. PSM has many incarnations, but two main avenues include (1) covalent PSM, in which the organic linkers of the MOF are modified with a reagent resulting in new functional groups, and (2) coordinative PSM, where organic molecules containing metal ligating groups are introduced onto the inorganic secondary building units (SBUs) of the MOF. These methods have evolved from simple efforts to modifying MOFs to demonstrate proof-of-concept, to becoming key synthetic tools for advancing MOFs for a range of emerging applications, including selective gas sorption, catalysis, and drug delivery. Moreover, both covalent and coordinative PSM have been used to create hierarchal MOFs, MOF-based porous liquids, and other unusual MOF materials. This Outlook highlights recent reports that have extended the scope of PSM in MOFs, some seminal reports that have contributed to the advancement of PSM in MOFs, and our view on future directions of the field.

摘要

金属有机框架材料(MOFs)是一类多孔材料,因其有机和无机构建单元而具有巨大的化学可调性。合成前方法已被用于构建定制的MOFs,但由于典型的MOF溶剂热合成条件,其官能团范围相当有限。MOFs的合成后修饰(PSM)已发展成为一种拓宽MOFs官能团范围的替代策略。PSM有多种形式,但主要有两条途径,包括(1)共价PSM,其中MOF的有机连接体用试剂进行修饰,从而产生新的官能团;(2)配位PSM,即将含有金属配位基团的有机分子引入到MOF的无机二级构筑单元(SBUs)上。这些方法已从简单的用于修饰MOFs以证明概念的尝试,发展成为推进MOFs用于一系列新兴应用(包括选择性气体吸附、催化和药物递送)的关键合成工具。此外,共价和配位PSM都已被用于创建分级MOFs、基于MOF的多孔液体和其他特殊的MOF材料。本展望重点介绍了最近扩展了MOFs中PSM范围的报告、一些对MOFs中PSM的发展有贡献的开创性报告,以及我们对该领域未来方向的看法。

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