1 results match your criteria: "University of Arizona Tucson AZ 85721 USA wwang@pharmacy.arizona.edu.[Affiliation]"

Direct, stereoselective thioglycosylation enabled by an organophotoredox radical strategy.

Chem Sci

October 2020

Departments of Pharmacology and Toxicology and Chemistry and Biochemistry, BIO5 Institute, and University of Arizona Cancer Centre, University of Arizona Tucson AZ 85721 USA

While strategies involving a 2e transfer pathway have dictated glycosylation development, the direct glycosylation of readily accessible glycosyl donors as radical precursors is particularly appealing because of high radical anomeric selectivity and atom- and step-economy. However, the development of the radical process has been challenging owing to notorious competing reduction, elimination and/or S side reactions of commonly used, labile glycosyl donors. Here we introduce an organophotocatalytic strategy through which glycosyl bromides can be efficiently converted into corresponding anomeric radicals by photoredox mediated HAT catalysis without a transition metal or a directing group and achieve highly anomeric selectivity.

View Article and Find Full Text PDF