The straightforward synthesis of a series of enantiomerically pure Lewis basic amides by simple condensation of commercially available enantiopure diamines with picolinic acid is reported. These compounds were shown to promote the enantioselective reduction of ketoimines with trichlorosilane. Working with the model substrate N-phenyl benzophenone imine, the new organocatalysts led to the formation of the corresponding amine, with excellent chemical efficiency (up to 99% chemical yield) and good stereoselectivity (up to 73% ee). Up to 83% of enantioselectivity was reached in the reduction of differently substituted imines
Silanes are widely recognized as efficient reagent for reduction of the carbonyl and imine functiona...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
A new family of Lewis basic 2-pyridyl oxazolines have been developed, which can act as efficient org...
Picolinamide\u2013cinchona organocatalysts for the successful enantioselective reduction of ketomine...
The behavior of readily synthesized and even commercially available (S)-proline derivatives, was stu...
The development of simple, low-cost, efficient, and sustainable routes to enantiomerically pure amin...
Novel metal-free, readily available chiral catalytic systems for the enantioselective reduction of k...
The reduction of C=N bonds represents a powerful and widely used transformation allowing new nitroge...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
Enantioselective reduction of ketimines 6-10 With trichlorosilane can be catalyzed by the N-methyl v...
The invention relates to a process for the preparation of enantiomerically enriched amines from keto...
First, test the water! In the presence of a chiral Lewis base catalyst 2, the supposedly moisture-un...
L-Valine derived N-sulfinamides have been developed as efficient enantioselective Lewis basic organo...
Asymmetric reduction of N-aryl ketimines 1a–k, 43, and 45 with trichlorosilane can be catalyzed by n...
L-Pipecolinic acid derived formamides have been developed as highly efficient and enantioselective L...
Silanes are widely recognized as efficient reagent for reduction of the carbonyl and imine functiona...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
A new family of Lewis basic 2-pyridyl oxazolines have been developed, which can act as efficient org...
Picolinamide\u2013cinchona organocatalysts for the successful enantioselective reduction of ketomine...
The behavior of readily synthesized and even commercially available (S)-proline derivatives, was stu...
The development of simple, low-cost, efficient, and sustainable routes to enantiomerically pure amin...
Novel metal-free, readily available chiral catalytic systems for the enantioselective reduction of k...
The reduction of C=N bonds represents a powerful and widely used transformation allowing new nitroge...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
Enantioselective reduction of ketimines 6-10 With trichlorosilane can be catalyzed by the N-methyl v...
The invention relates to a process for the preparation of enantiomerically enriched amines from keto...
First, test the water! In the presence of a chiral Lewis base catalyst 2, the supposedly moisture-un...
L-Valine derived N-sulfinamides have been developed as efficient enantioselective Lewis basic organo...
Asymmetric reduction of N-aryl ketimines 1a–k, 43, and 45 with trichlorosilane can be catalyzed by n...
L-Pipecolinic acid derived formamides have been developed as highly efficient and enantioselective L...
Silanes are widely recognized as efficient reagent for reduction of the carbonyl and imine functiona...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
A new family of Lewis basic 2-pyridyl oxazolines have been developed, which can act as efficient org...