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Continuous flow synthesis of aryl aldehydes by Pd-catalyzed formylation of phenol-derived aryl fluorosulfonates using syngas.


ABSTRACT: This communication describes the palladium-catalyzed reductive carbonylation of aryl fluorosulfonates (ArOSO2F) using syngas as an inexpensive and sustainable source of carbon monoxide and hydrogen. The conversion of phenols to aryl fluorosulfonates can be conveniently achieved by employing the inexpensive commodity chemical sulfuryl fluoride (SO2F2) and base. The developed continuous flow formylation protocol requires relatively low loadings for palladium acetate (1.25 mol%) and ligand (2.5 mol%). Good to excellent yields of aryl aldehydes were obtained within 45 min for substrates containing electron withdrawing substituents, and 2 h for substrates containing electron donating substituents. The optimal reaction conditions were identified as 120 °C temperature and 20 bar pressure in dimethyl sulfoxide (DMSO) as solvent. DMSO was crucial in suppressing Pd black formation and enhancing reaction rate and selectivity.

SUBMITTER: Kockinger M 

PROVIDER: S-EPMC9054596 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Continuous flow synthesis of aryl aldehydes by Pd-catalyzed formylation of phenol-derived aryl fluorosulfonates using syngas.

Köckinger Manuel M   Hanselmann Paul P   Hu Guixian G   Hone Christopher A CA   Kappe C Oliver CO  

RSC advances 20200611 38


This communication describes the palladium-catalyzed reductive carbonylation of aryl fluorosulfonates (ArOSO<sub>2</sub>F) using syngas as an inexpensive and sustainable source of carbon monoxide and hydrogen. The conversion of phenols to aryl fluorosulfonates can be conveniently achieved by employing the inexpensive commodity chemical sulfuryl fluoride (SO<sub>2</sub>F<sub>2</sub>) and base. The developed continuous flow formylation protocol requires relatively low loadings for palladium acetat  ...[more]

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