The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a well-established procedure for the synthesis of enantio-enriched amines. Five supported cinchona-based picolinamides have been prepared and their activity tested in a model reaction. The comparison of different supporting materials revealed that polystyrene gave better results than silica in terms of stereoselectivity. The applicability of the solid-supported catalyst of choice to the reduction of different imines was also demonstrated. Additionally, for the first time, a catalytic reactor containing a polymer-immobilized chiral picolinamide has been employed for the stereoselective reduction of imines with trichlorosilane under continuous flow...
Strategies for preparing chiral molecules in enantiomerically enriched form is a field of very acti...
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...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
A new class of solid supported chiral imidazolidinone organocatalysts for the catalytic reduction of...
Picolinamide\u2013cinchona organocatalysts for the successful enantioselective reduction of ketomine...
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...
The convenient, metal-free reduction of imines that contain an inexpensive and removable chiral auxi...
The enantioselective reduction of ketoimines has been successfully realized, using trichlorosilane a...
The invention relates to a process for the preparation of enantiomerically enriched amines from keto...
The diastereoselective, trichlorosilane-mediate reduction of imines, bearing different and removable...
N O 5, Cl3SiH (60%, 28%ee) HN PMP H MePh HN PMP MePh H R; 36% + S; 64% 1a 1aa 1ab NH O O O Ph NH PMP...
Novel metal-free, readily available chiral catalytic systems for the enantioselective reduction of k...
Strategies for preparing chiral molecules in enantiomerically enriched form is a field of very acti...
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...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
The stereoselective reduction of imines with trichlorosilane catalyzed by chiral Lewis bases is a we...
A new class of solid supported chiral imidazolidinone organocatalysts for the catalytic reduction of...
Picolinamide\u2013cinchona organocatalysts for the successful enantioselective reduction of ketomine...
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...
The convenient, metal-free reduction of imines that contain an inexpensive and removable chiral auxi...
The enantioselective reduction of ketoimines has been successfully realized, using trichlorosilane a...
The invention relates to a process for the preparation of enantiomerically enriched amines from keto...
The diastereoselective, trichlorosilane-mediate reduction of imines, bearing different and removable...
N O 5, Cl3SiH (60%, 28%ee) HN PMP H MePh HN PMP MePh H R; 36% + S; 64% 1a 1aa 1ab NH O O O Ph NH PMP...
Novel metal-free, readily available chiral catalytic systems for the enantioselective reduction of k...
Strategies for preparing chiral molecules in enantiomerically enriched form is a field of very acti...
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...