Si-directed regiocontrol in asymmetric Pd-catalyzed allylic alkylations using C1-ammonium enolate nucleophiles

Cooperative catalysis enables the direct enantioselective α-allylation of linear prochiral esters using Si-substituted allyl electrophiles. The Si-substituent directs the regioselectivity of enantioselective bond formation and provides products containing synthetically versatile pentafluorophenyl es...

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Veröffentlicht in:Tetrahedron 2018-09, Vol.74 (38), p.5383-5391
Hauptverfasser: Fyfe, James W.B., Kabia, Omaru M., Pearson, Colin M., Snaddon, Thomas N.
Format: Artikel
Sprache:eng
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Zusammenfassung:Cooperative catalysis enables the direct enantioselective α-allylation of linear prochiral esters using Si-substituted allyl electrophiles. The Si-substituent directs the regioselectivity of enantioselective bond formation and provides products containing synthetically versatile pentafluorophenyl ester and vinylsilane moieties. Critical to the efficacy of this process was the recognition that the ancillary ligand on palladium could be altered to prevent formation of a deleterious ether by-product, whilst retaining enantioselectivity through the Lewis base catalyst. Flexibility such as this is unique to cooperative catalysis events and provides efficient access to an array of enantioenriched products that are orthogonally functionalized and easily modified. [Display omitted]
ISSN:0040-4020
1464-5416
DOI:10.1016/j.tet.2018.04.021