Although visible-light-driven dual photoredox catalysis, a method that combines photoabsorbers and transition metals, has become a powerful tool to conduct coupling reactions, resource economical and scalability issues persist, owing to the use of catalysts and light absorbers that exploit critical raw materials (such as iridium complexes), and are homogeneous in nature. Here we report the merger of metallic single-atom and photoredox catalysis, in the form of a Ni atom-supported carbon nitride material, for the C–O coupling of carboxylic acids and alkyl halides. This operationally straightforward system, composed of only earth-abundant components, exhibits a wide functional group tolerance. Additionally, short reaction times, facile recovery and high catalyst stability make this method highly attractive for industrial applications.

Bajada, M., Di Liberto, G., Tosoni, S., Ruta, V., Mino, L., Allasia, N., et al. (2023). Light-driven C–O coupling of carboxylic acids and alkyl halides over a Ni single-atom catalyst. NATURE SYNTHESIS, 2(11), 1092-1103 [10.1038/s44160-023-00341-3].

Light-driven C–O coupling of carboxylic acids and alkyl halides over a Ni single-atom catalyst

Di Liberto G.;Tosoni S.
;
Pacchioni G.;
2023

Abstract

Although visible-light-driven dual photoredox catalysis, a method that combines photoabsorbers and transition metals, has become a powerful tool to conduct coupling reactions, resource economical and scalability issues persist, owing to the use of catalysts and light absorbers that exploit critical raw materials (such as iridium complexes), and are homogeneous in nature. Here we report the merger of metallic single-atom and photoredox catalysis, in the form of a Ni atom-supported carbon nitride material, for the C–O coupling of carboxylic acids and alkyl halides. This operationally straightforward system, composed of only earth-abundant components, exhibits a wide functional group tolerance. Additionally, short reaction times, facile recovery and high catalyst stability make this method highly attractive for industrial applications.
Articolo in rivista - Articolo scientifico
SAC, C3N4, DFT, C-O coupling
English
15-giu-2023
2023
2
11
1092
1103
none
Bajada, M., Di Liberto, G., Tosoni, S., Ruta, V., Mino, L., Allasia, N., et al. (2023). Light-driven C–O coupling of carboxylic acids and alkyl halides over a Ni single-atom catalyst. NATURE SYNTHESIS, 2(11), 1092-1103 [10.1038/s44160-023-00341-3].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/438599
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