Single-Electron Transfer Reactions Enabled by N-Heterocyclic Carbene Organocatalysis

Chemistry. 2021 Feb 15;27(10):3238-3250. doi: 10.1002/chem.202004059. Epub 2020 Dec 9.

Abstract

Over the past decades, N-heterocyclic carbene (NHC) organocatalysis has undergone a flourish of development on the basis of closed-shell reaction paths. By contrast, the emerging area of single-electron transfer (SET) reactions enabled by NHC catalysis still remain underdeveloped, but offer plenty of opportunities to develop new catalytic modes and useful synthetic methods. A number of interesting transformations were triggered by the SET process from the electron-rich Breslow intermediates to various single-electron acceptors. In additions, recent studies revealed that the Breslow radical cations could also be generated by single-electron reduction of the electron-deficient acyl azolium intermediates. These discoveries open a new avenue for NHC organocatalysis to harness radical reactions. The present review will focus on the exciting advancements in the dynamic area of radical NHC organocatalysis.

Keywords: Breslow intermediates; N-heterocyclic carbenes; organocatalysis; radical reactions; single-electron transfer.

Publication types

  • Review