The transition state models in two mechanistically distinct pathways, involving (i) an enamine carboxylic acid (path-A, 4) and (ii) an enamine carboxylate (path-B, 8), in the proline-catalyzed asymmetric alpha-amination have been examined using DFT methods. The path-A predicts the correct product stereochemistry under base-free conditions while path-B accounts for reversal of configuration in the presence of a base
ORGANIC CHEMISTRY 16:511 -- 517 (2003) # 2003 Data Trace Publishing Company CCC 1431-9268 O O O O H...
By means of DFT and AIM calculations, the steric and stereoelectronic effects that control the enant...
Current developments in the burgeoning area of cooperative asymmetric catalysis indicate the use of ...
The transition state models in two mechanistically distinct pathways, involving (i) an enamine carbo...
Comparison of the oxazolidinone and enamine pathways in enantioselective aldol reactions by using de...
Density functional theory has been employed in investigating the efficiency of a series of bicyclic ...
The stereocontrolling transition state (TS) models for C-C bond formation relying on hydrogen bondin...
As part of our ongoing studies to provide an experimental basis for the improved understanding of or...
The intermolecular enamine catalyzed asymmetric ‘formal’ alpha-alkylation of aldehydes is described....
An organocatalytic asymmetric α-alkylation of aldehydes has recently been shown to provide cyclic al...
α-Branched ketones remain a challenging type of substrates in aminocatalysis due to their congested ...
The isolation and structural characterization of both aldehyde- and ketone-derived proline enaminone...
The fundamental factors contributing toward the stereoselectivity in organocatalyzed asymmetric Mich...
Over the years, the field of enantioselective organocatalysis has seen unparalleled growth in the de...
Contrary to the widely accepted mechanism of the Hajos−Parrish−Eder−Sauer−Wiechert reaction, we have...
ORGANIC CHEMISTRY 16:511 -- 517 (2003) # 2003 Data Trace Publishing Company CCC 1431-9268 O O O O H...
By means of DFT and AIM calculations, the steric and stereoelectronic effects that control the enant...
Current developments in the burgeoning area of cooperative asymmetric catalysis indicate the use of ...
The transition state models in two mechanistically distinct pathways, involving (i) an enamine carbo...
Comparison of the oxazolidinone and enamine pathways in enantioselective aldol reactions by using de...
Density functional theory has been employed in investigating the efficiency of a series of bicyclic ...
The stereocontrolling transition state (TS) models for C-C bond formation relying on hydrogen bondin...
As part of our ongoing studies to provide an experimental basis for the improved understanding of or...
The intermolecular enamine catalyzed asymmetric ‘formal’ alpha-alkylation of aldehydes is described....
An organocatalytic asymmetric α-alkylation of aldehydes has recently been shown to provide cyclic al...
α-Branched ketones remain a challenging type of substrates in aminocatalysis due to their congested ...
The isolation and structural characterization of both aldehyde- and ketone-derived proline enaminone...
The fundamental factors contributing toward the stereoselectivity in organocatalyzed asymmetric Mich...
Over the years, the field of enantioselective organocatalysis has seen unparalleled growth in the de...
Contrary to the widely accepted mechanism of the Hajos−Parrish−Eder−Sauer−Wiechert reaction, we have...
ORGANIC CHEMISTRY 16:511 -- 517 (2003) # 2003 Data Trace Publishing Company CCC 1431-9268 O O O O H...
By means of DFT and AIM calculations, the steric and stereoelectronic effects that control the enant...
Current developments in the burgeoning area of cooperative asymmetric catalysis indicate the use of ...