Dipartimento di Scienze e Tecnologie Chimiche, Università "Tor Vergata", Via della Ricerca Scientifica, 1 I-00133 Rome, Italy.
Chem Soc Rev. 2022 Mar 21;51(6):2171-2223. doi: 10.1039/d1cs00556a.
The direct functionalization of C(sp)-H bonds represents one of the most investigated approaches to develop new synthetic methodology. Among the available strategies for intermolecular C-H bond functionalization, increasing attention has been devoted to hydrogen atom transfer (HAT) based procedures promoted by radical or radical-like reagents, that offer the opportunity to introduce a large variety of atoms and groups in place of hydrogen under mild conditions. Because of the large number of aliphatic C-H bonds displayed by organic molecules, in these processes control over site-selectivity represents a crucial issue, and the associated factors have been discussed. In this review article, attention will be devoted to the role of electronic effects on C(sp)-H bond functionalization site-selectivity. Through an analysis of the recent literature, a detailed description of the HAT reagents employed in these processes, the associated mechanistic features and the selectivity patterns observed in the functionalization of substrates of increasing structural complexity will be provided.
C(sp)-H 键的直接官能化是开发新合成方法的最受关注的方法之一。在用于分子间 C-H 键官能化的现有策略中,越来越多的人关注由自由基或类自由基试剂促进的氢原子转移 (HAT) 过程,这些方法提供了在温和条件下用大量原子和基团取代氢的机会。由于有机分子中存在大量的脂肪族 C-H 键,在这些过程中,对位点选择性的控制是一个关键问题,并且已经讨论了相关因素。在这篇综述文章中,将重点讨论电子效应对 C(sp)-H 键官能化位点选择性的影响。通过对最新文献的分析,详细描述了这些过程中使用的 HAT 试剂、相关的反应机理特征以及在功能化具有增加结构复杂性的底物时观察到的选择性模式。