Design of chiral ligands for asymmetric catalysis: From C2-symmetric semicorrins and bisoxazolines to non-symmetric phosphinooxazolines

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Abstract

Chiral C2-symmetric semicorrins have proved to be highly efficient ligands for Cu-catalyzed enantioselective cyclopropanation of olefins and Co-catalyzed enantioselective reduction of α,β-unsaturated carboxylic esters and amides. Based on these findings, analogous, readily accessible C2-symmetric bisoxazolines have been developed which, in a short time, have become standard ligands in asymmetric catalysis, allowing effective enantiocontrol in a variety of metal-catalyzed reactions. More recently, our work has led us from C2-symmetric nitrogen ligands to unsymmetric phosphinooxazolines. P,N-ligands of this type have been successfully applied in palladium- and tungsten-catalyzed allylic substitutions and in enantioselective Heck reactions of alkenyl and aryl triflates with cyclic olefins. © Acta Chemica Scandinavica 1996.

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Pfaltz, A. (1996). Design of chiral ligands for asymmetric catalysis: From C2-symmetric semicorrins and bisoxazolines to non-symmetric phosphinooxazolines. Acta Chemica Scandinavica, 50(3), 189–194. https://doi.org/10.3891/acta.chem.scand.50-0189

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