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Linker functionalized metal-organic frameworks

机译:链接器功能化的金属有机框架

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Owing to their three dimensionality and high porosity, metal-organic frameworks (MOFs) have attracted the attention of scientists especially chemists and material engineers. The frameworks of this subclass of hybrid materials are made of inorganic metal ions/clusters and organic bridging ligands. Special connections between these two building blocks of MOFs lead to a theoretically unlimited number of frameworks. Unlike other porous materials, MOFs benefit from characteristics such as high crystallinity and regularity, high porosity and surface area, hybrid organic-inorganic nature, moderate to high chemical and thermal stability, and decorable pores with different functional groups. Decorating MOFs with functions is possible through functionalization of organic linkers, inorganic building blocks, and void cavities of the framework. Tunability of MOFs with organic linkers is of particular importance due to the unlimited possibility to design functional or multi-functional organic linkers as well as distinctive chemical properties of organic functional groups (OFGs). The purpose of this review is to gain deeper insight into the effects of organic functional groups on structure, host-guest chemistry and applications of functional metal-organic frameworks (FMOFs) in order to be able to synthesize functional MOFs for specific purposes through an in depth analysis of the literature. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于金属有机骨架(MOF)的三维和高孔隙度,它们吸引了科学家尤其是化学家和材料工程师的注意力。杂化材料这一子类的框架由无机金属离子/簇和有机桥联配体制成。这两个MOF构建块之间的特殊连接导致理论上数量不受限制的框架。与其他多孔材料不同,MOF得益于以下特性:高结晶度和规则性,高孔隙率和表面积,有机-无机杂化性质,中等至高化学和热稳定性以及具有不同官能团的可装饰孔。通过功能化有机连接基,无机结构单元和框架的空洞,可以用功能装饰MOF。由于设计功能或多功能有机连接基的无限可能性以及有机官能团(OFG)的独特化学性质,MOF与有机连接基的可调性尤为重要。这篇综述的目的是更深入地了解有机官能团对结构,主体-客体化学和功能金属-有机骨架(FMOF)的应用的影响,以便能够通过合成特定目的的功能性MOF。文献深度分析。 (C)2019 Elsevier B.V.保留所有权利。

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