The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetric hydrogenation of N-benzylated 3-substituted pyridinium salts into the corresponding piperidines. Indeed, in the presence of Et3N, a Rh-JosiPhos catalyst reduced a range of pyridinium salts with ee values up to 90 %. The role of the base was elucidated with a mechanistic study involving the isolation of the various reaction intermediates and isotopic labeling experiments. Additionally, this study provided some evidence for an enantiodetermining step involving a dihydropyridine intermediate
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
This thesis presents the hydrogenation of substituted pyridines using N,P-ligated iridium catalystsi...
Asymmetric hydrogenation of ortho-substituted pyridines catalyzed by N,P-ligated iridium is demonstr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Enantioselective synthesis of α-aryl and α-heteroaryl piperidines is reported. The key step is an ir...
Asymmetric hydrogenation has been applied to a large range of prochiral substrates as a cost-efficie...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
This thesis presents the hydrogenation of substituted pyridines using N,P-ligated iridium catalystsi...
Asymmetric hydrogenation of ortho-substituted pyridines catalyzed by N,P-ligated iridium is demonstr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
The use of an equivalent amount of an organic base leads to high enantiomeric excess in the asymmetr...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
Enantioselective synthesis of α-aryl and α-heteroaryl piperidines is reported. The key step is an ir...
Asymmetric hydrogenation has been applied to a large range of prochiral substrates as a cost-efficie...
Herein we describe a new methodology for the asymmetric hydrogenation (AH) of 2-substituted pyridini...
This thesis presents the hydrogenation of substituted pyridines using N,P-ligated iridium catalystsi...
Asymmetric hydrogenation of ortho-substituted pyridines catalyzed by N,P-ligated iridium is demonstr...