State Key Laboratory of Coordination Chemistry, Chemistry and Biomedicine Innovation Center (ChemBIC), School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.
Chem Soc Rev. 2021 Aug 21;50(16):8903-8953. doi: 10.1039/c9cs00571d. Epub 2021 Jun 30.
The formation of C-aryl bonds has been the focus of intensive research over the last decades for the construction of complex molecules from simple, readily available feedstocks. Traditionally, these strategies involve the coupling of organohalides (I, Br, Cl) with organometallic reagents (Mg, Zn, B, Si, Sn,…) such as Kumada-Corriu, Negishi, Suzuki-Miyaura, Hiyama and Sonogashira cross-couplings. More recently, alternative methods have provided access to these products by reactions with less reactive C-Het (F, O, S, N) and C-C bonds. Compared to traditional methods, the direct cleavage and arylation of these chemical bonds, the essential link in accessible feedstocks, has become increasingly important from the viewpoint of step-economy and functional-group compatibility. This comprehensive review aims to outline the development and advances of this topic, which was organized into (1) C-F bond arylation, (2) C-O bond arylation, (3) C-S bond arylation, (4) C-N bond arylation, and (5) C-C bond arylation. Substantial attention has been paid to the strategies and mechanistic investigations. We hope that this review can trigger chemists to discover more efficient methodologies to access arylation products by cleavage of these C-Het and C-C bonds.
在过去的几十年里,人们一直致力于研究 C-芳基键的形成,以便从简单易得的原料构建复杂分子。传统上,这些策略涉及到卤代烃(I、Br、Cl)与有机金属试剂(Mg、Zn、B、Si、Sn、…)的偶联,如 Kumada-Corriu、Negishi、Suzuki-Miyaura、Hiyama 和 Sonogashira 交叉偶联。最近,通过与反应性较低的 C-Het(F、O、S、N)和 C-C 键的反应,提供了获得这些产物的替代方法。与传统方法相比,从步骤经济性和官能团兼容性的角度来看,这些化学键的直接断裂和芳基化,作为可及原料的关键环节,变得越来越重要。这篇综述旨在概述这一主题的发展和进展,该主题分为(1)C-F 键芳基化、(2)C-O 键芳基化、(3)C-S 键芳基化、(4)C-N 键芳基化和(5)C-C 键芳基化。我们对策略和机理研究给予了充分关注。我们希望这篇综述能够激发化学家发现更多通过这些 C-Het 和 C-C 键的断裂来获得芳基化产物的有效方法。