The sulfide motif is distributed widely acrosschemical and biological space. In synthesis, its instal-lation often marks the end point of a sequence, dueto its relative inertness; sulfides typically require directoxidation of sulfur before they are receptive towardtransformation. Unfortunately, selective S-oxidation isnot always straightforward, with the need for oxidantslacking chemoselectivity in the presence of functionalityand delivering mixtures of oxidation products. This multi-step manipulation of the sulfide motif, initiated by direct S-oxidation, limits the use of sulfides as synthetic handlesfor downstream manipulation. Herein, we describe a direct activation of sulfides by C–H oxidation alpha to sulfur—rather than traditional oxidation at sulfur—that facilitates efficient formal C─S bond manipulation. The mild nature of the photo-induced anaerobic oxidation protocol enables its merger with high-value transformations in telescoped or one-pot protocols that deliver branched amines, secondary alcohols, and alkenes from aldehyde and ketone intermediates. The method expands the chemistry of sulfides by diverting reactivity away from sulfur (oxidation, alkylation) and instead targeting directly the alpha position, resulting in formal manipulation of the C─S bond, and redefining sulfides as latent synthetic handles to be “switched on” at will.
Cuomo, V.D., Romano, C., Procter, D.J. (2025). Direct Activation of Sulfides by C–H Oxidation with Photoexcited Nitroarenes: Formal Manipulations of the C–S Bond. ANGEWANDTE CHEMIE. INTERNATIONAL EDITION, 64(33), 1-6 [10.1002/anie.202509244].
Direct Activation of Sulfides by C–H Oxidation with Photoexcited Nitroarenes: Formal Manipulations of the C–S Bond
C. Romano
;
2025
Abstract
The sulfide motif is distributed widely acrosschemical and biological space. In synthesis, its instal-lation often marks the end point of a sequence, dueto its relative inertness; sulfides typically require directoxidation of sulfur before they are receptive towardtransformation. Unfortunately, selective S-oxidation isnot always straightforward, with the need for oxidantslacking chemoselectivity in the presence of functionalityand delivering mixtures of oxidation products. This multi-step manipulation of the sulfide motif, initiated by direct S-oxidation, limits the use of sulfides as synthetic handlesfor downstream manipulation. Herein, we describe a direct activation of sulfides by C–H oxidation alpha to sulfur—rather than traditional oxidation at sulfur—that facilitates efficient formal C─S bond manipulation. The mild nature of the photo-induced anaerobic oxidation protocol enables its merger with high-value transformations in telescoped or one-pot protocols that deliver branched amines, secondary alcohols, and alkenes from aldehyde and ketone intermediates. The method expands the chemistry of sulfides by diverting reactivity away from sulfur (oxidation, alkylation) and instead targeting directly the alpha position, resulting in formal manipulation of the C─S bond, and redefining sulfides as latent synthetic handles to be “switched on” at will.| File | Dimensione | Formato | |
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Angew Chem Int Ed - 2025 - Cuomo - Direct Activation of Sulfides by C H Oxidation with Photoexcited Nitroarenes Formal.pdf
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