Heterocyclic sulfones, sulfonamides, and sulfonyl fluorides constitute an important structural motif in medicinal chemistry. Methods to make six-membered heteroaromatic sulfonyl compounds, however, remain challenging, and most efforts rely on commercial sulfonyl chlorides. We report herein the reaction of sodium tert-butyldimethyl silyloxymethylsulfinate with quinoline N-oxides to selectively furnish C2-substituted sulfones. The silyloxymethylsulfinate can be deprotected to then form sulfonyl fluorides, sulfonamides, and sulfones. This transformation is scalable and has broad applicability to a wide array of quinoline and isoquinoline functionality.
Functionalized pyridine and quinoline
rings are important
components
of numerous bioactive molecules and natural products; however, diversification
of these rings often requires de novo heterocycle
ring synthesis or demanding reaction conditions. We report a method
for desulfinative alkylation of pyridine and quinoline N-methoxide salts that operates under both photocatalytic and electrostatic
electron donor–acceptor-mediated pathways. Unlike most EDA-mediated
processes, this reaction operates in the absence of light and with
the desulfination of the donor compound.
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