A chiral aldehyde is rationally combined with a Lewis acid and a transition metal for the first time to form a triple catalytic system. This cocatalytic system exhibits good catalytic activation and stereoselective-control abilities in the asymmetric α-allylation reaction of N-unprotected amino acid esters and allyl acetates. Optically active α,α-disubstituted α-amino acids (α-AAs) are generated in good yields (up to 87%) and enantioselectivities (up to 96% ee). Preliminary mechanism investigation indicates that the chiral aldehyde 3f acts both as an organocatalyst to activate the amino acid ester via the formation of a Schiff base, and as a ligand to facilitate the nucleophilic attack process by coordinating with π-allyl Pd(II) species
Cooperative multicatalytic methods are steadily gaining popularity in asymmetric catalysis. The use ...
Cooperative multicatalytic methods are steadily gaining popularity in asymmetric catalysis. The use ...
Catalytic transformations of α-amino C–H bonds to afford valuable enantiomerically enriched α-substi...
Catalytic α-allylation of unprotected amino acid esters to produce α-quaternary α-allyl amino acid e...
We have developed a highly enantioselective Pd/chiral acid-catalyzed α-allylation of α-branched alde...
Direct α-allylation of α-branched aldehydes was successfully carried out with a readily available al...
Amine acid transformation is an important chemical process in biological systems. As a well-develope...
We have developed the first catalytic asymmetric aldehyde allylation by Umpolung of a p-allyl pallad...
We have developed the first catalytic asymmetric aldehyde allylation by Umpolung of a p-allyl pallad...
A palladium-catalyzed asymmetric α-allylation of aldehydes with alkynes has been established by inte...
Chiral aldehyde catalysis is uniquely suitable for the direct asymmetric α-functionalization of N-un...
Chiral aldehyde catalysis is uniquely suitable for the direct asymmetric α-functionalization of N-un...
Triple catalysis: The title reaction between α‐branched aldehydes and allylic alcohols, which genera...
Chiral aldehyde catalysis is uniquely suitable for the direct asymmetric α-functionalization of N-un...
An important challenge in asymmetric synthesis is the development of fully stereodivergent strategie...
Cooperative multicatalytic methods are steadily gaining popularity in asymmetric catalysis. The use ...
Cooperative multicatalytic methods are steadily gaining popularity in asymmetric catalysis. The use ...
Catalytic transformations of α-amino C–H bonds to afford valuable enantiomerically enriched α-substi...
Catalytic α-allylation of unprotected amino acid esters to produce α-quaternary α-allyl amino acid e...
We have developed a highly enantioselective Pd/chiral acid-catalyzed α-allylation of α-branched alde...
Direct α-allylation of α-branched aldehydes was successfully carried out with a readily available al...
Amine acid transformation is an important chemical process in biological systems. As a well-develope...
We have developed the first catalytic asymmetric aldehyde allylation by Umpolung of a p-allyl pallad...
We have developed the first catalytic asymmetric aldehyde allylation by Umpolung of a p-allyl pallad...
A palladium-catalyzed asymmetric α-allylation of aldehydes with alkynes has been established by inte...
Chiral aldehyde catalysis is uniquely suitable for the direct asymmetric α-functionalization of N-un...
Chiral aldehyde catalysis is uniquely suitable for the direct asymmetric α-functionalization of N-un...
Triple catalysis: The title reaction between α‐branched aldehydes and allylic alcohols, which genera...
Chiral aldehyde catalysis is uniquely suitable for the direct asymmetric α-functionalization of N-un...
An important challenge in asymmetric synthesis is the development of fully stereodivergent strategie...
Cooperative multicatalytic methods are steadily gaining popularity in asymmetric catalysis. The use ...
Cooperative multicatalytic methods are steadily gaining popularity in asymmetric catalysis. The use ...
Catalytic transformations of α-amino C–H bonds to afford valuable enantiomerically enriched α-substi...