Jacob Clément, Maes Bert U W, Evano Gwilherm
Laboratoire de Chimie Organique, Service de Chimie et Physico-Chimie Organiques, Université libre de Bruxelles (ULB), Avenue F.D. Roosevelt 50, CP160/06, 1050, Brussels, Belgium.
Organic Synthesis Division, Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, 2020, Antwerp, Belgium.
Chemistry. 2021 Oct 7;27(56):13899-13952. doi: 10.1002/chem.202101598. Epub 2021 Aug 18.
The direct functionalization of C-H bonds is among the most fundamental chemical transformations in organic synthesis. However, when the innate reactivity of the substrate cannot be utilized for the functionalization of a given single C-H bond, this selective C-H bond functionalization mostly relies on the use of directing groups that allow bringing the catalyst in close proximity to the C-H bond to be activated and these directing groups need to be installed before and cleaved after the transformation, which involves two additional undesired synthetic operations. These additional steps dramatically reduce the overall impact and the attractiveness of C-H bond functionalization techniques since classical approaches based on substrate pre-functionalization are sometimes still more straightforward and appealing. During the past decade, a different approach involving both the in situ installation and removal of the directing group, which can then often be used in a catalytic manner, has emerged: the transient directing group strategy. In addition to its innovative character, this strategy has brought C-H bond functionalization to an unprecedented level of usefulness and has enabled the development of remarkably efficient processes for the direct and selective introduction of functional groups onto both aromatic and aliphatic substrates. The processes unlocked by the development of these transient directing groups will be comprehensively overviewed in this review article.
C-H键的直接官能团化是有机合成中最基本的化学转化之一。然而,当底物的固有反应性无法用于特定单个C-H键的官能团化时,这种选择性C-H键官能团化大多依赖于导向基团的使用,这些导向基团能使催化剂靠近要活化的C-H键,并且这些导向基团需要在转化之前安装,在转化之后裂解,这涉及两个额外的不理想的合成操作。这些额外的步骤极大地降低了C-H键官能团化技术的整体影响力和吸引力,因为基于底物预官能团化的经典方法有时仍然更直接且更具吸引力。在过去十年中,出现了一种不同的方法,涉及导向基团的原位安装和去除,然后导向基团通常可以以催化方式使用:瞬态导向基团策略。除了其创新性之外,该策略还将C-H键官能团化提升到了前所未有的实用水平,并使得开发出用于将官能团直接且选择性地引入芳族和脂肪族底物的高效得多的方法成为可能。本文将全面概述由这些瞬态导向基团的发展所开启的合成方法。