Detailed kinetic and computational investigation of the enantio- and diastereoselective allylation of aldehydes 1 with allyltrichlorosilanes 5, employing the pyridine N-oxides METHOX (9) and QUINOX (10) as chiral organocatalysts, indicate that the reaction can proceed through a dissociative (cationic) or associative (neutral) mechanism: METHOX apparently favors a pentacoordinate cationic transition state, while the less sterically demanding QUINOX is likely to operate via a hexacoordinate neutral complex. In both pathways, only one molecule of the catalyst is involved in the rate- and selectivity-determining step, which is supported by both experimental and computational data
The use of chiral sulfoxides as Lewis base catalysts in the allylation of aldehydes with allyltrichl...
In order to extend the earlier work in the group,1 we endeavored to explore the ability of the terpe...
Allylation of aromatic and heteroaromatic aldehydes 1a-k with allyltrichlorosilane 2 can be catalyze...
Detailed kinetic and computational investigation of the enantio- and diastereoselective allylation o...
Detailed kinetic and computational investigation of the enantio- and diastereoselective allylation o...
Allylation of aromatic alclehydes 1a-m with allyl- and crotyl-trichlorosilanes 2-4, catalyzed by the...
Allylation of aromatic aldehydes 1a-m with allyl- and crotyl- trichlorosilanes 2-4, catalyzed by the...
The allylation of aldehydes is one of the most important methods for C-C bond formation because the ...
A series of structurally simple pyridine N-oxides have readily been assembled from inexpensive amino...
Enantioselective organic catalysis represents one of the more rapidly expanding fields of research i...
The mechanism of the allylation of aldehydes in the presence of allyltrichlorosilane employing the ...
Umpolung in the allylation reaction is discussed with examples drawn from transition-metal-catalyzed...
Asymmetric allylation of aromatic aldehydes 1 with allyltrichlorosilane (2) can be catalyzed by new ...
The straightforward synthesis of a series of enantiomerically pure pyridine- and quinoline-N-oxides ...
The use of chiral sulfoxides as Lewis base catalysts in the allylation of aldehydes with allyltrichl...
In order to extend the earlier work in the group,1 we endeavored to explore the ability of the terpe...
Allylation of aromatic and heteroaromatic aldehydes 1a-k with allyltrichlorosilane 2 can be catalyze...
Detailed kinetic and computational investigation of the enantio- and diastereoselective allylation o...
Detailed kinetic and computational investigation of the enantio- and diastereoselective allylation o...
Allylation of aromatic alclehydes 1a-m with allyl- and crotyl-trichlorosilanes 2-4, catalyzed by the...
Allylation of aromatic aldehydes 1a-m with allyl- and crotyl- trichlorosilanes 2-4, catalyzed by the...
The allylation of aldehydes is one of the most important methods for C-C bond formation because the ...
A series of structurally simple pyridine N-oxides have readily been assembled from inexpensive amino...
Enantioselective organic catalysis represents one of the more rapidly expanding fields of research i...
The mechanism of the allylation of aldehydes in the presence of allyltrichlorosilane employing the ...
Umpolung in the allylation reaction is discussed with examples drawn from transition-metal-catalyzed...
Asymmetric allylation of aromatic aldehydes 1 with allyltrichlorosilane (2) can be catalyzed by new ...
The straightforward synthesis of a series of enantiomerically pure pyridine- and quinoline-N-oxides ...
The use of chiral sulfoxides as Lewis base catalysts in the allylation of aldehydes with allyltrichl...
In order to extend the earlier work in the group,1 we endeavored to explore the ability of the terpe...
Allylation of aromatic and heteroaromatic aldehydes 1a-k with allyltrichlorosilane 2 can be catalyze...