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杯芳烃羧酸酯和铀酰构筑的巨型规则多面体

Giant regular polyhedra from calixarene carboxylates and uranyl.

机构信息

Institute of Chemical Research of Catalonia (ICIQ), Avda. Països Catalans 16, Tarragona, Spain.

出版信息

Nat Commun. 2012 Apr 17;3:785. doi: 10.1038/ncomms1793.

Abstract

Self-assembly of large multi-component systems is a common strategy for the bottom-up construction of discrete, well-defined, nanoscopic-sized cages. Icosahedral or pseudospherical viral capsids, built up from hundreds of identical proteins, constitute typical examples of the complexity attained by biological self-assembly. Chemical versions of the so-called 5 Platonic regular or 13 Archimedean semi-regular polyhedra are usually assembled combining molecular platforms with metals with commensurate coordination spheres. Here we report novel, self-assembled cages, using the conical-shaped carboxylic acid derivatives of calix[4]arene and calix[5]arene as ligands, and the uranyl cation UO(2)2+ as a metallic counterpart, which coordinates with three carboxylates at the equatorial plane, giving rise to hexagonal bipyramidal architectures. As a result, octahedral and icosahedral anionic metallocages of nanoscopic dimensions are formed with an unusually small number of components.

摘要

自组装大型多组分体系是一种常见的策略,用于自下而上构建离散的、明确定义的、纳米级大小的笼状结构。由数百个相同蛋白质构成的二十面体或拟球型病毒衣壳,是通过生物自组装达到的复杂性的典型例子。所谓的 5 个柏拉图正多面体或 13 个阿基米德半正多面体的化学版本通常通过将分子平台与具有相称配位球的金属组合来组装。在这里,我们报告了使用杯[4]芳烃和杯[5]芳烃的锥形羧酸衍生物作为配体,以及铀酰阳离子 UO(2)2+作为金属对应物的新型自组装笼,其在赤道平面上与三个羧酸根配位,形成六方双锥结构。结果,形成了具有非常少数组件的纳米尺寸的八面体和二十面体阴离子金属笼。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbfb/3337980/bab39a75532a/ncomms1793-f1.jpg

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