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卤键诱导的亲电芳香卤化反应。

Halogen bond-induced electrophilic aromatic halogenations.

机构信息

Mahidol University International College, Mahidol University, Salaya, Nakorn Pathom 73170, Thailand.

出版信息

Org Biomol Chem. 2021 Sep 15;19(35):7518-7534. doi: 10.1039/d1ob00936b.

Abstract

In recent years, there has been increasing interest in utilising halogen bonds in organic synthesis, especially in aromatic halogenation reactions. -Halosuccinimides and 1,3-dihalo-5,5-dimethylhydantoins are popular sources of halonium ions due to their ease of handling and low toxicities. Traditionally, these -haloimides are activated by electrophiles, namely Brønsted and Lewis acids. The recent discovery of possible activation by nucleophilic Lewis base catalysts led to a paradigm shift in aromatic halogenation. Active functional motifs in Lewis base catalysts such as CS, R-S-R, Ar-S-S-Ar, SO, Ar-NH, and RNHCl form halogen bonds with the positively charged σ-hole of the halogen atoms: an essential interaction to produce halonium ions. This review highlights the evolution of the two modes of activation. Evidence of halogen bond formation from mechanistic studies of nucleophilic activation is also discussed herein.

摘要

近年来,人们对利用卤键在有机合成中的应用越来越感兴趣,特别是在芳香族卤化反应中。-卤代琥珀酰亚胺和 1,3-二卤代-5,5-二甲基海因因其易于处理和低毒性而成为卤鎓离子的常用来源。传统上,这些 -卤代酰亚胺通过亲电试剂,即 Brønsted 和 Lewis 酸来激活。最近发现的可能由亲核 Lewis 碱催化剂激活导致芳香族卤化反应的范式转变。Lewis 碱催化剂中的活性官能团,如 C-S、R-S-R、Ar-S-S-Ar、S-O、Ar-NH 和 RNHCl,与卤原子的正电荷 σ-空穴形成卤键:这是产生卤鎓离子的必要相互作用。这篇综述强调了两种激活模式的演变。本文还讨论了从亲核活化的机理研究中得到的卤键形成的证据。

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