Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, United Kingdom.
Chem Rev. 2022 Jun 8;122(11):10393-10437. doi: 10.1021/acs.chemrev.1c00763. Epub 2022 Apr 18.
The field of metallosupramolecular chemistry has advanced rapidly in recent years. Much work in this area has focused on the formation of hollow self-assembled metal-organic architectures and exploration of the applications of their confined nanospaces. These discrete, soluble structures incorporate metal ions as 'glue' to link organic ligands together into polyhedra.Most of the architectures employed thus far have been highly symmetrical, as these have been the easiest to prepare. Such high-symmetry structures contain pseudospherical cavities, and so typically bind roughly spherical guests. Biomolecules and high-value synthetic compounds are rarely isotropic, highly-symmetrical species. To bind, sense, separate, and transform such substrates, new, lower-symmetry, metal-organic cages are needed. Herein we summarize recent approaches, which taken together form the first draft of a handbook for the design of higher-complexity, lower-symmetry, self-assembled metal-organic architectures.
近年来,金属超分子化学领域发展迅速。该领域的许多工作都集中在空心自组装金属-有机结构的形成以及对其受限纳米空间的应用探索上。这些离散的、可溶的结构将金属离子作为“胶”,将有机配体连接成多面体。迄今为止,所采用的大多数结构都是高度对称的,因为这些结构最容易制备。这种高对称性结构包含拟球形空腔,因此通常可以结合大致呈球形的客体。生物分子和高价值合成化合物很少是各向同性的、高度对称的物质。为了结合、感应、分离和转化这些底物,需要新的、低对称性的金属-有机笼。在此,我们总结了最近的一些方法,这些方法共同构成了设计具有更高复杂度、更低对称性的自组装金属-有机结构的手册的初稿。