Photoexcitation of Distinct Divalent Palladium Complexes in Cross-Coupling Amination Under Air

Angew Chem Int Ed Engl. 2024 Jan 15;63(3):e202314508. doi: 10.1002/anie.202314508. Epub 2023 Dec 15.

Abstract

The development of metal complexes that function as both photocatalyst and cross-coupling catalyst remains a challenging research topic. So far, progress has been shown in palladium(0) excited-state transition metal catalysis for the construction of carbon-carbon bonds where the oxidative addition of alkyl/aryl halides to zero-valent palladium (Pd0 ) is achievable at room temperature. In contrast, the analogous process with divalent palladium (PdII ) is uphill and endothermic. For the first time, we report that divalent palladium can act as a light-absorbing species that undergoes double excitation to realize carbon-nitrogen (C-N) cross-couplings under air. Differently substituted aryl halides can be applied in the mild, and selective cross-coupling amination using palladium acetate as both photocatalyst and cross-coupling catalyst at room temperature. Density functional theory studies supported by mechanistic investigations provide insight into the reaction mechanism.

Keywords: Anilines; Aryl Halides; Cross-Couplings; DFT Calculations; Palladium.