Direct enolate formation coupled with subsequent enantioselective C–C bond formation remains a topic of intense interest in asymmetric catalysis. This methodology is achieved even with low acidic amides without an electron-withdrawing group at the α-position in the context of a Mannich-type reaction. Acetate-, propionate-, and butyrate-type 7-azaindoline amides served as enolate precursors to afford the desired Mannich adducts with high stereoselectivity, and ligand-enabled diastereo-divergency provided access to both <i>anti</i>/<i>syn</i> diastereomers. The facile transformation of the amide moiety ensures the synthetic utility of the Mannich adducts
Mannich-type reactions are powerful methods for the efficient synthesis of beta-amino carbonyl compo...
A highly diastereo- and enantioselective Mannich-type reaction of 3-aryloxindoles with N-Boc aldimin...
Different malonates and beta-ketoesters can react with N-tert-butoxycarbonyl- (N-Boc) and N-benzylox...
Direct enolate formation coupled with subsequent enantioselective C–C bond formation remains a topic...
α-Halogenated carbonyl compounds are susceptible to dehalogenation and thus largely neglected as eno...
The last two decades have witnessed the emergence of direct enolization protocols providing atom-eco...
Reaction of aldehydes, anilines, and enecarbamates in dichloromethane in the presence of EtOH and a ...
A catalytic asymmetric aldol reaction directly employing amides as latent enolates has remained elus...
The efficient asymmetric synthesis of new chiral gamma-chloro-alpha,beta-diamino acid derivatives vi...
route to enantioenriched α-amino esters by direct reaction of α-chloroglycine ester as a practical i...
Anti-configured protected α,β-diamino acids are prepared with up to 99% ee using a direct catalytic ...
The introduction of the CF<sub>3</sub> unit is a common strategy for modifying pharmacokinetic prope...
Organocatalytic, asymmetric Mannich reactions giving beta3-amino acid derivatives have been reviewed...
Chiral aldehyde catalysis is a useful strategy in the catalytic asymmetric α-functionalization of am...
Mannich-type reactions are powerful methods for the efficient synthesis of beta-amino carbonyl compo...
A highly diastereo- and enantioselective Mannich-type reaction of 3-aryloxindoles with N-Boc aldimin...
Different malonates and beta-ketoesters can react with N-tert-butoxycarbonyl- (N-Boc) and N-benzylox...
Direct enolate formation coupled with subsequent enantioselective C–C bond formation remains a topic...
α-Halogenated carbonyl compounds are susceptible to dehalogenation and thus largely neglected as eno...
The last two decades have witnessed the emergence of direct enolization protocols providing atom-eco...
Reaction of aldehydes, anilines, and enecarbamates in dichloromethane in the presence of EtOH and a ...
A catalytic asymmetric aldol reaction directly employing amides as latent enolates has remained elus...
The efficient asymmetric synthesis of new chiral gamma-chloro-alpha,beta-diamino acid derivatives vi...
route to enantioenriched α-amino esters by direct reaction of α-chloroglycine ester as a practical i...
Anti-configured protected α,β-diamino acids are prepared with up to 99% ee using a direct catalytic ...
The introduction of the CF<sub>3</sub> unit is a common strategy for modifying pharmacokinetic prope...
Organocatalytic, asymmetric Mannich reactions giving beta3-amino acid derivatives have been reviewed...
Chiral aldehyde catalysis is a useful strategy in the catalytic asymmetric α-functionalization of am...
Mannich-type reactions are powerful methods for the efficient synthesis of beta-amino carbonyl compo...
A highly diastereo- and enantioselective Mannich-type reaction of 3-aryloxindoles with N-Boc aldimin...
Different malonates and beta-ketoesters can react with N-tert-butoxycarbonyl- (N-Boc) and N-benzylox...