Site-Selective and Stereoselective C–H Alkylations of Carbohydrates via Combined Diarylborinic Acid and Photoredox Catalysis

Diphenylborinic acid serves as a cocatalyst for site- and stereoselective C–H alkylation reactions of carbohydrates under photoredox conditions using quinuclidine as the hydrogen atom transfer mediator. Products arising from selective abstraction of the equatorial hydrogens of cis-1,2-diol moieties,...

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Veröffentlicht in:Journal of the American Chemical Society 2019-04, Vol.141 (13), p.5149-5153
Hauptverfasser: Dimakos, Victoria, Su, Hsin Y, Garrett, Graham E, Taylor, Mark S
Format: Artikel
Sprache:eng
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Zusammenfassung:Diphenylborinic acid serves as a cocatalyst for site- and stereoselective C–H alkylation reactions of carbohydrates under photoredox conditions using quinuclidine as the hydrogen atom transfer mediator. Products arising from selective abstraction of the equatorial hydrogens of cis-1,2-diol moieties, followed by C–C bond formation with net retention of configuration, are obtained. Computational modeling supports a mechanism involving formation of a tetracoordinate borinic ester, which accelerates hydrogen atom transfer with the quinuclidine-derived radical cation through polarity-matching and/or ion-pairing effects.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.9b01531