Dissymmetrically Substituted Diphosphines with Two Atropisomeric Axes and Their Application in Asymmetric Hydrogenation of Imines

Author:

Hedouin Gaspard1,Abed Ali Abdine Racha1,Dherbassy Quentin1,Michon Christophe1,Funes‐Ardoiz Ignacio2,Colobert Françoise1ORCID,Wencel‐Delord Joanna1ORCID

Affiliation:

1. Laboratoire d'Innovation Moléculaire et Applications ECPM UMR 7042 Université de Strasbourg/Université de Haute-Alsace 25 rue Becquerel, Cedex 67087 Strasbourg France

2. Department of Chemistry Centro de Investigación en Síntesis Química (CISQ) University of La Rioja Logroño 26006 Spain

Abstract

AbstractDespite the great potential and widespread applications, the majority of diphosphine ligands used in asymmetric catalysis are C2‐symmetric and their structural modifications are often limited. Herein, we reported the design of original enantiopure dissymmetrical diphosphines, BiaxPhos, bearing two atropisomeric axes. Their original chiral architecture combined with important modularity, renders BiaxPhos ligands appealing candidates for asymmetric catalysis, as illustrated by the Ir‐BiaxPhos catalyzed asymmetric imines hydrogenation, furnishing chiral amines with excellent enantioselectivities under mild conditions. Remarkably, combined experimental mechanistic investigations and DFT calculations delineate yet unexplored mechanistic scenario implying the hydrogenation of the enamine tautomeric form instead of the classic reduction of the imine.

Funder

Universidad de La Rioja

Publisher

Wiley

Subject

General Chemistry

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