The design and development of highly enantioselective anti aldol reactions based on computer-aided transition-state modeling is reported. The new chiral boron ligand L = 6 was conceived based on its conformational preferences and on minimization of (+/-) double gauche pentane interactions. Modeling the transition structures for the aldol reaction of Z enolates 1 (L = 6) predicted a selectivity which is equal to or slightly lower than that calculated and experimentally tested with L = Ipc (isopinocampheyl) (see Table I). The predictions for E enol borinates (2) were synthetically more interesting: the new ligand (6) was calculated to be much more selective than Ipc (see Table II). Preparation of the boron reagent {[(Menth)CH2]2BCl-OEt2} (11)...
Boron enolates derived from alpha-heterosubstituted thioacetates and bearing menthone-derived chiral...
The protocol for the preparation of boron enolates and their subsequent reaction with aldehydes is d...
The use of boron enolates of chiral N-acyl oxazolidinones i and ii in highly stereoselective aldol c...
Transition-state modelling for the aldol reaction of chiral Z and E enol borinates (1 and 2, Scheme ...
We have recently described the development of a quantitative transition state model for the predicti...
We have recently described the development of a quantitative transition state model for the predicti...
A molecular mechanics model of the boron enolate aldol transition state is used to analyse the stere...
We recently described the development of a quantitative transition state model for the prediction of...
A force field model for the aldol reactions of ketone-derived enol borinates with aldehydes has been...
This tutorial review describes that high levels of substrate-controlled, 1,5-stereoinduction are obt...
Chiral amino boronic acids and their derivatives have a wide range of applications including enzyme ...
Two complementary classes of chiral boron enolates for adaptation to aldol additions to resin-bound ...
The boron-mediated aldol reactions of certain types of beta-alkoxy methyl ketone show remarkably hig...
This tutorial review describes that high levels of substrate-controlled, 1,5-stereoinduction are obt...
A molecular mechanics transition state model is used to analyse the stereoselectivity of a series of...
Boron enolates derived from alpha-heterosubstituted thioacetates and bearing menthone-derived chiral...
The protocol for the preparation of boron enolates and their subsequent reaction with aldehydes is d...
The use of boron enolates of chiral N-acyl oxazolidinones i and ii in highly stereoselective aldol c...
Transition-state modelling for the aldol reaction of chiral Z and E enol borinates (1 and 2, Scheme ...
We have recently described the development of a quantitative transition state model for the predicti...
We have recently described the development of a quantitative transition state model for the predicti...
A molecular mechanics model of the boron enolate aldol transition state is used to analyse the stere...
We recently described the development of a quantitative transition state model for the prediction of...
A force field model for the aldol reactions of ketone-derived enol borinates with aldehydes has been...
This tutorial review describes that high levels of substrate-controlled, 1,5-stereoinduction are obt...
Chiral amino boronic acids and their derivatives have a wide range of applications including enzyme ...
Two complementary classes of chiral boron enolates for adaptation to aldol additions to resin-bound ...
The boron-mediated aldol reactions of certain types of beta-alkoxy methyl ketone show remarkably hig...
This tutorial review describes that high levels of substrate-controlled, 1,5-stereoinduction are obt...
A molecular mechanics transition state model is used to analyse the stereoselectivity of a series of...
Boron enolates derived from alpha-heterosubstituted thioacetates and bearing menthone-derived chiral...
The protocol for the preparation of boron enolates and their subsequent reaction with aldehydes is d...
The use of boron enolates of chiral N-acyl oxazolidinones i and ii in highly stereoselective aldol c...