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Design and synthesis of metal-organic frameworks using metal-organic polyhedra as supermolecular building blocks

机译:以金属有机多面体为超分子构件的金属有机骨架的设计与合成

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This critical review highlights supermolecular building blocks (SBBs) in the context of their impact upon the design, synthesis, and structure of metal-organic materials (MOMs). MOMs, also known as coordination polymers, hybrid inorganic-organic materials, and metal-organic frameworks, represent an emerging class of materials that have attracted the imagination of solid-state chemists because MOMs combine unprecedented levels of porosity with a range of other functional properties that occur through the metal moiety and/or the organic ligand. First generation MOMs exploited the geometry of metal ions or secondary building units (SBUs), small metal clusters that mimic polygons, for the generation of MOMs. In this critical review we examine the recent (<5 years) adoption of much larger scale metal-organic polyhedra (MOPs) as SBBs for the construction of MOMs by highlighting how the large size and high symmetry of such SBBs can afford improved control over the topology of the resulting MOM and a new level of scale to the resulting framework (204 references).
机译:这篇重要的评论着重介绍了超分子构件(SBB)对金属有机材料(MOM)的设计,合成和结构的影响。 MOM,也称为配位聚合物,无机-有机杂化材料和金属-有机骨架,代表了新兴的一类材料,吸引了固态化学家的想象,因为MOM将空前的孔隙度与一系列其他功能特性相结合通过金属部分和/或有机配体发生。第一代MOM利用金属离子或辅助建筑单元(SBU)(模仿多边形的小型金属簇)的几何形状来生成MOM。在这篇重要的综述中,我们着重研究了大型金属有机多面体(MOPs)最近(<5年)作为SBB在MOM构造中的应用,重点介绍了此类SBB的大尺寸和高对称性如何能够提供对SBB的更好控制。生成的MOM的拓扑结构和生成的框架的新级别扩展(204个参考)。

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