The behavior of readily synthesized and even commercially available (S)-proline derivatives, was studied in the trichlorosilane-mediated reduction of ketoimines. A small library of structurally and electronically modified chiral Lewis bases was considered; such compounds were shown to promote the enantioselective reduction of different substrates in good chemical yields. In the HSiCl3 addition to the model substrate N-phenylacetophenone imine, the organocatalyst of choice led to the formation of the corresponding amine with good stereoselectivity, up to 75% ee. Theoretical studies were also performed in order to elucidate the origin of the stereoselection
A new family of Lewis basic 2-pyridyl oxazolines have been developed, which can act as efficient org...
We recently reported the first example of S-chiral organocatalysts, that are highly efficient and en...
Asymmetric reduction of N-aryl ketimines 1a–k, 43, and 45 with trichlorosilane can be catalyzed by n...
The straightforward synthesis of a series of enantiomerically pure Lewis basic amides by simple cond...
The reduction of C=N bonds represents a powerful and widely used transformation allowing new nitroge...
Novel metal-free, readily available chiral catalytic systems for the enantioselective reduction of k...
The invention relates to a process for the preparation of enantiomerically enriched amines from keto...
Picolinamide\u2013cinchona organocatalysts for the successful enantioselective reduction of ketomine...
The development of simple, low-cost, efficient, and sustainable routes to enantiomerically pure amin...
Silanes are widely recognized as efficient reagent for reduction of the carbonyl and imine functiona...
Enantioselective reduction of ketimines 6-10 With trichlorosilane can be catalyzed by the N-methyl v...
L-Valine derived N-sulfinamides have been developed as efficient enantioselective Lewis basic organo...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
Strategies for preparing chiral molecules in enantiomerically enriched form is a field of very acti...
AbstractTwelve P-chiral phosphine oxides were screened for their ability to act as a chiral Lewis ba...
A new family of Lewis basic 2-pyridyl oxazolines have been developed, which can act as efficient org...
We recently reported the first example of S-chiral organocatalysts, that are highly efficient and en...
Asymmetric reduction of N-aryl ketimines 1a–k, 43, and 45 with trichlorosilane can be catalyzed by n...
The straightforward synthesis of a series of enantiomerically pure Lewis basic amides by simple cond...
The reduction of C=N bonds represents a powerful and widely used transformation allowing new nitroge...
Novel metal-free, readily available chiral catalytic systems for the enantioselective reduction of k...
The invention relates to a process for the preparation of enantiomerically enriched amines from keto...
Picolinamide\u2013cinchona organocatalysts for the successful enantioselective reduction of ketomine...
The development of simple, low-cost, efficient, and sustainable routes to enantiomerically pure amin...
Silanes are widely recognized as efficient reagent for reduction of the carbonyl and imine functiona...
Enantioselective reduction of ketimines 6-10 With trichlorosilane can be catalyzed by the N-methyl v...
L-Valine derived N-sulfinamides have been developed as efficient enantioselective Lewis basic organo...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
Strategies for preparing chiral molecules in enantiomerically enriched form is a field of very acti...
AbstractTwelve P-chiral phosphine oxides were screened for their ability to act as a chiral Lewis ba...
A new family of Lewis basic 2-pyridyl oxazolines have been developed, which can act as efficient org...
We recently reported the first example of S-chiral organocatalysts, that are highly efficient and en...
Asymmetric reduction of N-aryl ketimines 1a–k, 43, and 45 with trichlorosilane can be catalyzed by n...