Both the steric hindrance and the electronic effect are important factors for controlling the enantioselectivity in asymmetric catalysis. The substituent-dependent enantioselectivity in the asymmetric aziridination of chalcones catalyzed by 1,8-anthracene-linked bis-oxazoline (AnBOX) was rationalized to the pi-stacking interaction between the ligand backbone and substrates and primarily confirmed by the use of bulky substrates and catalysts without aromatic backbones. The results provide important information for designing novel ligands and for understanding the influence of the electronic effect in asymmetric catalysis. (c) 2007 Elsevier Ltd. All rights reserved
Throughout my doctoral studies, I have endeavored to address the question of how to rationally desig...
We describe the first theoretical study of a landmark example of chiral anion phase-transfer catalys...
Asymmetric catalysis has long been dominated by C2-symmetric bidentate ligands. More recently, steri...
Both the steric hindrance and the electronic effect are important factors for controlling the enanti...
Highly enantioselective aziridination of chalcones catalyzed by a novel backbone 1,8-bisoxazolidinyl...
Chalcones were asymmetrically aziridinated with [N-(p-toluenesulfonyl)imino]phenyliodinane (PhI=NTs)...
Simple bis(oxazoline) ligands, especially azabis(oxazolines), call promote the copper(II)-catalyzed ...
The copper-catalyzed aziridination of styrene is described using both heterogeneous, copper-exchange...
The copper-catalyzed aziridination of styrene with copper-exchanged zeolite HY(CuHY) and copper(II) ...
Parallel kinetic resolution of racemic mixtures is an important method used in asymmetric synthesis ...
Density functional theory investigation on the factors controlling enantio- and diastereoselection i...
Density functional theory investigation on the factors controlling enantio- and diastereoselection i...
This thesis deals with secondary interactions in asymmetric catalysis and their impact on the outcom...
The development of several aziridine-based ligands for the asymmetric addition of diethylzinc to a s...
We describe the first theoretical study of a landmark example of chiral anion phase-transfer catalys...
Throughout my doctoral studies, I have endeavored to address the question of how to rationally desig...
We describe the first theoretical study of a landmark example of chiral anion phase-transfer catalys...
Asymmetric catalysis has long been dominated by C2-symmetric bidentate ligands. More recently, steri...
Both the steric hindrance and the electronic effect are important factors for controlling the enanti...
Highly enantioselective aziridination of chalcones catalyzed by a novel backbone 1,8-bisoxazolidinyl...
Chalcones were asymmetrically aziridinated with [N-(p-toluenesulfonyl)imino]phenyliodinane (PhI=NTs)...
Simple bis(oxazoline) ligands, especially azabis(oxazolines), call promote the copper(II)-catalyzed ...
The copper-catalyzed aziridination of styrene is described using both heterogeneous, copper-exchange...
The copper-catalyzed aziridination of styrene with copper-exchanged zeolite HY(CuHY) and copper(II) ...
Parallel kinetic resolution of racemic mixtures is an important method used in asymmetric synthesis ...
Density functional theory investigation on the factors controlling enantio- and diastereoselection i...
Density functional theory investigation on the factors controlling enantio- and diastereoselection i...
This thesis deals with secondary interactions in asymmetric catalysis and their impact on the outcom...
The development of several aziridine-based ligands for the asymmetric addition of diethylzinc to a s...
We describe the first theoretical study of a landmark example of chiral anion phase-transfer catalys...
Throughout my doctoral studies, I have endeavored to address the question of how to rationally desig...
We describe the first theoretical study of a landmark example of chiral anion phase-transfer catalys...
Asymmetric catalysis has long been dominated by C2-symmetric bidentate ligands. More recently, steri...