Electroreduction Enables Regioselective 1,2-Diarylation of Alkenes with Two Electrophiles

Angew Chem Int Ed Engl. 2023 Apr 17;62(17):e202219166. doi: 10.1002/anie.202219166. Epub 2023 Mar 14.

Abstract

Precisely introducing two similar functional groups into bulk chemical alkenes represents a formidable route to complex molecules. Especially, the selective activation of two electrophiles is in crucial demand, yet challenging for cross-electrophile-coupling. Herein, we demonstrate a redox-mediated electrolysis, in which aryl nitriles are both aryl radical precursors and redox-mediators, enables an intermolecular alkene 1,2-diarylation with a remarkable regioselectivity, thereby avoiding the involvement of transition-metal catalysts. This transformation utilizes cyanoarene radical anions for activating various aryl halides (including iodides, bromides, and even chlorides) and affords 1,2-diarylation adducts in up to 83 % yield and >20 : 1 regioselectivity with more than 80 examples, providing a feasible approach to complex bibenzyl derivatives.

Keywords: Arylation; Difunctionalization; Electrochemistry; Redox Catalysis; Reductive Cross-Coupling.