Readily available chiral ammonium salts derived from cinchona alkaloids have proven to be effective phase transfer catalysts in the asymmetric Michael reaction of 3-substituted isoindolinones. This protocol provides a convenient method for the construction of valuable asymmetric 3,3-disubstituted isoindolinones in high yields and moderate to good enantioselectivity. Diastereoselectivity was also investigated in the construction of contiguous tertiary and quaternary stereocenters. The use of acrolein as Michael acceptor led to an interesting tricyclic derivative, a pyrroloisoindolinone analogue, via a tandem conjugated addition/cyclization reaction
The ability to control absolute stereochemistry is a powerful tool in organic synthesis. Given the u...
International audienceA new asymmetric organocatalyzed intramolecular aza-Michael reaction under a d...
This Account provides an overview of our group's research in the field of asymmetric organocatalytic...
Readily available chiral ammonium salts derived from cinchona alkaloids have proven to be effective...
Readily available chiral ammonium salts derived from cinchona alkaloids have proven to be effective ...
New bifunctional chiral ammonium salts were investigated in an asymmetric cascade synthesis of a key...
In this article we describe a series of new asymmetric Michael reactions of carboxylate-3-substitute...
The research outlined herein consists of two projects, each relating to the investigation and develo...
This thesis describes an investigation into organocatalysed asymmetric Michael additions and their a...
This thesis presents the application and development of H-bond donor organocatalysts. Chapter 2 pre...
This Letter describes the first application of activated 3-substituted isoindolinones in asymmetric ...
New bifunctional chiral ammonium salts were investigated in an asymmetric cascade synthesis of a key...
The effectiveness of a series of chiral phase transfer catalysts in cascade reactions of active meth...
The ability to control absolute stereochemistry is a powerful tool in organic synthesis. Given the u...
International audienceA new asymmetric organocatalyzed intramolecular aza-Michael reaction under a d...
This Account provides an overview of our group's research in the field of asymmetric organocatalytic...
Readily available chiral ammonium salts derived from cinchona alkaloids have proven to be effective...
Readily available chiral ammonium salts derived from cinchona alkaloids have proven to be effective ...
New bifunctional chiral ammonium salts were investigated in an asymmetric cascade synthesis of a key...
In this article we describe a series of new asymmetric Michael reactions of carboxylate-3-substitute...
The research outlined herein consists of two projects, each relating to the investigation and develo...
This thesis describes an investigation into organocatalysed asymmetric Michael additions and their a...
This thesis presents the application and development of H-bond donor organocatalysts. Chapter 2 pre...
This Letter describes the first application of activated 3-substituted isoindolinones in asymmetric ...
New bifunctional chiral ammonium salts were investigated in an asymmetric cascade synthesis of a key...
The effectiveness of a series of chiral phase transfer catalysts in cascade reactions of active meth...
The ability to control absolute stereochemistry is a powerful tool in organic synthesis. Given the u...
International audienceA new asymmetric organocatalyzed intramolecular aza-Michael reaction under a d...
This Account provides an overview of our group's research in the field of asymmetric organocatalytic...