Issue 16, 2022

Copper-catalyzed fluoroamide-directed remote benzylic C–H olefination: facile access to internal alkenes

Abstract

The general, site-selective copper-catalyzed fluoroamide-directed remote benzylic C–H olefination of N-fluoroamides with terminal alkenes for producing internal alkenes is disclosed. This protocol proceeds via a hybrid Cu–radical mechanism, which synergistically combines the favorable features of radical transformations (such as a site-selective remote C–H hydrogen atom transfer (HAT) step) with those of transition-metal catalysis (such as a selective β-hydrogen elimination step). The cooperative Cu and dinitrogen-based ligand catalytic systems are crucial, as they not only preferentially enable the coupling of terminal alkenes with remote benzylic C–H bonds through the chemoselective recognition of two remote δ-C(sp3)–H bonds respectively existing in two distinct alkyl-based chains linked to the nitrogen atom of the N-fluoroamides, but they also precisely control site selectivity for the olefination of remote benzylic C–H bonds in a δ position relative to the amidyl nitrogen atom.

Graphical abstract: Copper-catalyzed fluoroamide-directed remote benzylic C–H olefination: facile access to internal alkenes

Supplementary files

Article information

Article type
Research Article
Submitted
20 May 2022
Accepted
17 Jun 2022
First published
20 Jun 2022

Org. Chem. Front., 2022,9, 4309-4315

Copper-catalyzed fluoroamide-directed remote benzylic C–H olefination: facile access to internal alkenes

L. Zhong, G. Lv, X. Ouyang, Y. Li and J. Li, Org. Chem. Front., 2022, 9, 4309 DOI: 10.1039/D2QO00822J

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