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基于[轮芳烃]的轮烷和伪轮烷的最新进展:从构建到应用。

Recent advances in the development of rotaxanes and pseudorotaxanes based on pillar[n]arenes: from construction to application.

机构信息

Shaanxi Key Laboratory of Natural Products & Chemical Biology, College of Che-mistry & Pharmacy, Northwest A&F University, Yangling 712100, P. R. China.

出版信息

Chem Commun (Camb). 2019 Oct 31;55(88):13198-13210. doi: 10.1039/c9cc07373f.

Abstract

Mechanically inter-locked molecules (MIMs) mainly including rotaxanes and pseudorotaxanes have attracted enormous attention for the fabrication of molecular machines, which can be constructed from macrocyclic molecules as the main building blocks through host-guest complexation. Pillar[n]arenes, as a new class of macrocyclic molecules, have a rigid pillar-like shaped architecture with an electron-rich cavity and two fine-tuneable rims. This unique symmetrical and rigid structure, easy modification and excellent properties in host-guest complexation provides pillar[n]arenes with the ability to form various interesting supramolecular systems. Importantly, the π-rich cavity of pillar[n]arenes also endows them with the ability to construct MIMs. This article will provide a comprehensive review of recent advances in pillar[n]arene-based MIMs, primarily focusing on rotaxanes and pseudorotaxanes, and their synthetic methods will be highlighted. In addition, the applications of pillar[n]arene-based MIMs will be summarized while current limitations and perspectives on the construction of pillar[n]arene-based MIMs will also be outlined.

摘要

机械互锁分子(MIMs)主要包括轮烷和索烃,由于能够构筑分子机器,受到了极大的关注,这些分子机器可以通过主客体络合作用,由大环分子作为主要结构单元构建而成。柱芳烃作为一类新型大环分子,具有刚性的柱状结构,富电子空腔和两个可调谐的边缘。这种独特的对称刚性结构、易于修饰以及在主客体络合作用中表现出的优异性能,使得柱芳烃能够形成各种有趣的超分子体系。重要的是,柱芳烃的富π空腔还使它们能够构建机械互锁分子。本文将对基于柱芳烃的机械互锁分子(主要是轮烷和索烃)的最新进展进行全面综述,并重点介绍它们的合成方法。此外,还将总结基于柱芳烃的机械互锁分子的应用,同时概述基于柱芳烃的机械互锁分子的构建目前存在的局限性和展望。

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