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金属有机骨架和金属有机多面体中的取代反应。

Substitution reactions in metal-organic frameworks and metal-organic polyhedra.

机构信息

Department of Chemistry and Chemical Engineering, College of Environmental and Energy Engineering, Beijing University of Technology, Beijing 100124, P. R. China.

出版信息

Chem Soc Rev. 2014 Aug 21;43(16):5952-81. doi: 10.1039/c4cs00033a.

Abstract

Substitution reaction, as one of the most powerful and efficient chemical reactions, has been widely used in various syntheses, including those for the design and preparation of functional molecules or materials. In the past decade, a class of newly developed inorganic-organic hybrid materials, namely metal-organic materials (MOMs), has experienced a rapid development. MOMs are composed of metal-containing nodes connected by organic linkers through strong chemical bonds, and can be divided into metal-organic frameworks (MOFs) and metal-organic polygons/polyhedra (MOPs) with infinite and discrete structural features, respectively. Recent research has shown that the substitution reaction can be used as a new strategy in the synthesis and modification of MOFs and MOPs, particularly for pre-designed ones with desired structures and functions, which are usually difficult to access by a direct one-pot self-assembly synthetic approach. This review highlights the implementation of the substitution reaction in MOFs and MOPs. Examples of substitution reactions at metal ions, organic ligands, and free guest molecules of MOFs and MOPs are listed and analyzed. The changes or modifications in the structures and/or properties of these materials induced by the substitutions, as well as the nature of the associated reaction, are discussed, with the conclusion that the substitution reaction is really feasible and powerful in synthesizing and tailoring MOMs.

摘要

取代反应作为最强大和最有效的化学反应之一,已被广泛应用于各种合成中,包括设计和制备功能分子或材料的合成。在过去的十年中,一类新开发的无机-有机杂化材料,即金属有机材料(MOMs),经历了快速发展。MOMs由金属节点通过强化学键与有机配体连接而成,可以分为具有无限和离散结构特征的金属-有机骨架(MOFs)和金属-有机多面体/多面体(MOPs)。最近的研究表明,取代反应可以作为 MOFs 和 MOPs 合成和修饰的一种新策略,特别是对于具有所需结构和功能的预设计 MOFs 和 MOPs,通常很难通过直接一锅自组装合成方法获得。本综述强调了取代反应在 MOFs 和 MOPs 中的应用。列举和分析了 MOFs 和 MOPs 中金属离子、有机配体和自由客体分子的取代反应实例。讨论了这些材料结构和/或性质的变化或修饰以及相关反应的性质,得出结论,取代反应在合成和调整 MOMs 方面确实是可行和强大的。

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