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联苯芳烃,超分子化学的多功能合成大环。

Biphenarenes, Versatile Synthetic Macrocycles for Supramolecular Chemistry.

机构信息

Department of Chemistry, College of Sciences, Northeastern University, Shenyang 110819, China.

Guangdong Provincial Key Laboratory of Functional Supramolecular Coordination Materials and Applications, Jinan University, Guangzhou 510632, China.

出版信息

Molecules. 2023 May 29;28(11):4422. doi: 10.3390/molecules28114422.

Abstract

The development of supramolecular chemistry has always been accompanied by the innovation of macrocyclic hosts. The synthesis of novel macrocycles with unique structures and functions will bring new development opportunities for supramolecular chemistry. As a new generation of macrocyclic hosts, biphenarenes have customizable cavity sizes and diverse backbones, overcoming the limitation that the cavities of traditionally popular macrocyclic hosts are generally smaller than 10 Å. These features undoubtedly endow biphenarenes with distinguished host-guest properties, which have attracted more and more attention. In this review, the structural characteristics and molecular recognition properties of biphenarenes are summarized. In addition, the applications of biphenarenes in adsorption and separation, drug delivery, fluorescence sensing and other fields are introduced. Hopefully, this review will provide a reference for the study of macrocyclic arenes, especially biphenarenes.

摘要

超分子化学的发展始终伴随着大环主体的创新。新型大环主体的独特结构和功能的合成将为超分子化学带来新的发展机遇。作为新一代大环主体,联苯芳烃具有可定制的空腔大小和多样化的骨架,克服了传统流行的大环主体的空腔通常小于 10 Å 的限制。这些特点无疑赋予了联苯芳烃卓越的主客体性质,引起了越来越多的关注。本文总结了联苯芳烃的结构特征和分子识别性质。此外,还介绍了联苯芳烃在吸附与分离、药物传递、荧光传感等领域的应用。希望本文的综述能为大环芳烃,特别是联苯芳烃的研究提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e0f/10254875/857b8bd119e1/molecules-28-04422-g001.jpg

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