Cobalt-Catalyzed Enantioconvergent Decarboxylative N-Alkylation

28 April 2025, Version 1

Abstract

Introduction of alkyl substituents onto nucleophilic nitrogen atoms in amines is a central synthetic strategy for increasing molecular complexity and structural diversity in medicinal chemistry, organic synthesis, and materi-als science. Although the direct transfer of a stereogenic alkyl group onto a nitrogen atom by N-alkylation is one of the most efficient approaches to asymmetric C(sp3)–N bond formation, few methods are available for the enan-tioconvergent N-alkylation of amines with racemic alkyl transfer reagents. We report herein, a previously unex-plored enantioconvergent decarboxylative N-alkylation of aromatic amines with racemic carboxylic acids. The reaction is enabled by a merger of acridine photocatalysis with Co(salen)-catalyzed asymmetric radical–polar crossover (RPC). The study provides a simple synthetic segway to medicinally and synthetically valuable α-chiral benzylic amines and elucidates the structural, electronic, and bonding effects that govern the stereocontrol imparted by the privileged Co(salen)-based asymmetric RPC catalytic system.

Keywords

radical-polar crossover
N-alkylation
decarboxylative reactions
asymmetric catalysis
cobalt
acridine

Supplementary materials

Title
Description
Actions
Title
Supporting Information
Description
Characterization, experimental and computational data
Actions

Comments

Comments are not moderated before they are posted, but they can be removed by the site moderators if they are found to be in contravention of our Commenting Policy [opens in a new tab] - please read this policy before you post. Comments should be used for scholarly discussion of the content in question. You can find more information about how to use the commenting feature here [opens in a new tab] .
This site is protected by reCAPTCHA and the Google Privacy Policy [opens in a new tab] and Terms of Service [opens in a new tab] apply.