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One-pot palladium-catalyzed synthesis of sulfonyl fluorides from aryl bromides.
Davies, Alyn T; Curto, John M; Bagley, Scott W; Willis, Michael C.
  • Davies AT; Department of Chemistry , University of Oxford , Chemical Research Laboratory , Mansfield Road , Oxford , OX1 3TA , UK . Email: michael.willis@chem.ox.ac.uk.
  • Curto JM; CVMET Medicinal Chemistry , Pfizer Inc. , Eastern Point Road , Groton , Connecticut 06340 , USA . Email: scott.w.bagley@pfizer.com.
  • Bagley SW; CVMET Medicinal Chemistry , Pfizer Inc. , Eastern Point Road , Groton , Connecticut 06340 , USA . Email: scott.w.bagley@pfizer.com.
  • Willis MC; Department of Chemistry , University of Oxford , Chemical Research Laboratory , Mansfield Road , Oxford , OX1 3TA , UK . Email: michael.willis@chem.ox.ac.uk.
Chem Sci ; 8(2): 1233-1237, 2017 Feb 01.
Article en En | MEDLINE | ID: mdl-28451264
ABSTRACT
A mild, efficient synthesis of sulfonyl fluorides from aryl and heteroaryl bromides utilizing palladium catalysis is described. The process involves the initial palladium-catalyzed sulfonylation of aryl bromides using DABSO as an SO2 source, followed by in situ treatment of the resultant sulfinate with the electrophilic fluorine source NFSI. This sequence represents the first general method for the sulfonylation of aryl bromides, and offers a practical, one-pot alternative to previously described syntheses of sulfonyl fluorides, allowing rapid access to these biologically important molecules. Excellent functional group tolerance is demonstrated, with the transformation successfully achieved on a number of active pharmaceutical ingredients, and their precursors. The preparation of peptide-derived sulfonyl fluorides is also demonstrated.