Pichette Drapeau Martin, Gooßen Lukas J
Ruhr-Universität Bochum, Lehrstuhl für Organische Chemie I, ZEMOS, Universitätsstr. 150, 44801, Bochum, Germany.
Chemistry. 2016 Dec 23;22(52):18654-18677. doi: 10.1002/chem.201603263. Epub 2016 Oct 12.
The selective transformation of C-H bonds is one of the most desirable approaches to creating complexity from simple building blocks. Several directing groups are efficient in controlling the regioselectivity of catalytic C-H bond functionalizations. Among them, carboxylic acids are particularly advantageous, since they are widely available in great structural diversity and at low cost. The carboxylate directing groups can be tracelessly cleaved or may serve as the anchor point for further functionalization through decarboxylative couplings. This Minireview summarizes the substantial progress made in the last few years in the development of reactions in which carboxylate groups direct C-H bond functionalizations with formation of C-C, C-O, C-N, or C-halogen bonds at specific positions. It is divided into sections on C-C, C-O, C-N, and C-halogen bond formation, each of which is subdivided by reactions and product classes. Particular emphasis is placed on methods that enable multiple derivatizations by combining carboxylate-directed C-H functionalization with decarboxylative couplings.
C-H键的选择性转化是从简单结构单元构建复杂分子最理想的方法之一。几种导向基团在控制催化C-H键官能化的区域选择性方面很有效。其中,羧酸特别具有优势,因为它们结构多样且广泛可得,成本低廉。羧酸根导向基团可以无痕裂解,或者通过脱羧偶联作为进一步官能化的锚定点。本综述总结了过去几年在羧酸根导向C-H键官能化反应发展方面取得的重大进展,这些反应在特定位置形成C-C、C-O、C-N或C-卤键。它分为C-C键形成、C-O键形成、C-N键形成和C-卤键形成几个部分,每个部分又根据反应和产物类别进一步细分。特别强调了通过将羧酸根导向的C-H官能化与脱羧偶联相结合实现多重衍生化的方法。