2024-04-22
The construction of carbonyl compounds via carbonylation reactions using safe CO sources remains a long-standing challenge to synthetic chemists. Herein, we propose a catalyst cascade Scheme in which CO2 is used as a CO surrogate in the carbonylation of benzyl chlorides. Our approach is based on the cooperation between two coexisting catalytic cycles: the CO2-to-CO electroreduction cycle promoted by [Fe(TPP)Cl] (TPP=meso-tetraphenylporphyrin) and an electrochemical carbonylation cycle catalyzed by [Ni(bpy)Br2] (2,2′-bipyridine). As a proof of concept, this protocol allows for the synthesis of symmetric ketones from good to excellent yields in an undivided cell with non-sacrificial electrodes. The reaction can be directly scaled up to gram-scale and operates effectively at a CO2 concentration of 10 %, demonstrating its robustness. Our mechanistic studies based on cyclic voltammetry, IR spectroelectrochemistry and Density Functional Theory calculations suggest a synergistic effect between the two catalysts. The CO produced from CO2 reduction is key in the formation of the [Ni(bpy)(CO)2], which is proposed as the catalytic intermediate responsible for the C−C bond formation in the carbonylation steps.
Article
Published version
English
9 p.
Wiley-VCH
ICIQ Foundation
CERCA Program/Generalitat de Catalunya
MICINN through Severo Ochoa Excellence Accreditation 2020–2023 (CEX2019-000925-S, MIC/AEI)
European Research Foundation for H2020 project ERC-2015-CoG GREENLIGHT_REDCAT 648304, (J.L.-F.)
Spanish Ministry of Universities for an FPU fellowship FPU16/04234 (S.F.)
AGAUR (2021-SGR-01260
MICINN (PID2019-110050RB-I00, J.L-F., PID2022-140142OB-I00, TED2021-132790B-I00, PDC2022-133451-I00)
C.L. and A.S. MICINN-PFI Scholarship for a predoctoral fellowship (PID2019-110050RB-I00)
CC BY-NC-ND 4.0 DEED
Papers [1286]