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硫属键合:概述。

Chalcogen Bonding: An Overview.

机构信息

Faculty of Chemistry and Biochemistry, Ruhr-University Bochum, Universitätsstraße 150, 44801, Bochum, Germany.

出版信息

Angew Chem Int Ed Engl. 2019 Feb 11;58(7):1880-1891. doi: 10.1002/anie.201809432. Epub 2018 Dec 4.

Abstract

In the last few decades, "unusual" noncovalent interactions like anion-π and halogen bonding have emerged as interesting alternatives to the ubiquitous hydrogen bonding in many research areas. This is also true, to a somewhat lesser extent, for chalcogen bonding, the noncovalent interaction involving Lewis acidic chalcogen centers. Herein, we aim to provide an overview on the use of chalcogen bonding in crystal engineering and in solution, with a focus on the recent developments concerning intermolecular chalcogen bonding in solution-phase applications. In the solid phase, chalcogen bonding has been used for the construction of nano-sized structures and the self-assembly of sophisticated self-complementary arrays. In solution, until very recently applications mostly focused on intramolecular interactions which stabilized the conformation of intermediates or reagents. In the last few years, intermolecular chalcogen bonding has increasingly also been exploited in solution, most notably in anion recognition and transport as well as in organic synthesis and organocatalysis.

摘要

在过去的几十年中,“非传统”的非共价相互作用,如阴离子-π 和卤键,已经成为许多研究领域中普遍存在的氢键的有趣替代品。对于涉及路易斯酸性硫属元素中心的非共价相互作用硫属键,情况也是如此,只是程度稍低一些。在此,我们旨在提供硫属键在晶体工程和溶液中的应用概述,重点介绍近年来有关溶液相应用中分子间硫属键相互作用的最新进展。在固相,硫属键已被用于构建纳米结构和复杂自互补阵列的自组装。在溶液中,直到最近,应用主要集中在稳定中间体或试剂构象的分子内相互作用上。在过去的几年中,分子间硫属键相互作用也越来越多地在溶液中得到了利用,最显著的是在阴离子识别和传输以及有机合成和有机催化中。

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