Issue 19, 2024

Substrate-directed C(sp3)–H borylation via transition metal catalysis: expanding the toolbox for C–H functionalization

Abstract

Organoborons play a crucial role in organic synthesis, easing the construction of C–C and C–X bonds, which in turn sensitize C–H borylation reactions. In the context of inert C(sp3)–H borylation, significant efforts have been dedicated to achieve site- and chemoselectivity by involving directing groups via transition metal catalysis. This review highlights various types of directing groups that can enable intricate and distal C(sp3)–H borylation; heteroatoms such as P, N, B, Si, Br, O, and Cl, which are attached to the substrate, act as the directing group. In addition to homogeneous catalysis, the occurrence of heterogeneous catalysis was realized, and the considerable contribution to chiral C(sp3)–H borylation is discussed. Finally, this review summarizes the mechanistic aspects and late-stage modifications of complex molecules.

Graphical abstract: Substrate-directed C(sp3)–H borylation via transition metal catalysis: expanding the toolbox for C–H functionalization

Article information

Article type
Review Article
Submitted
17 Jun 2024
Accepted
05 Aug 2024
First published
05 Aug 2024

Catal. Sci. Technol., 2024,14, 5488-5504

Substrate-directed C(sp3)–H borylation via transition metal catalysis: expanding the toolbox for C–H functionalization

D. D. Thalakottukara, M. Sekar, A. Mandal, T. Gandhi and D. Maiti, Catal. Sci. Technol., 2024, 14, 5488 DOI: 10.1039/D4CY00754A

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