Modification of a metal surface by a strongly adsorbed chiral organic molecule has proven to be an interesting strategy for heterogeneous chiral catalysis. Platinum chirally modified by cinchona alkaloids, successfully applied for the enantioselective hydrogenation of α-ketoesters, is probably the most prominent catalyst based on this concept. Despite considerable research efforts toward understanding of this complex catalytic system, the proposed mechanistic models are still debated. Here we discuss how enantiodifferentiation can be induced on a catalytically active surface and validate the models proposed for the platinum−cinchona system in the light of the existing molecular knowledge
Enantio-differentiation in the asymmetric hydrogenation of α-ketoesters to α-hydroxyesters over plat...
The enantioselective hydrogenation of α-ketoesters to α-hydroxyesters over Pt/Al2O3 catalysts modifi...
A new chiral modifier pantoyl-naphthylethylamine (PNEA) was synthesized by reductive alkylation of 1...
Modification of a metal surface by a strongly adsorbed chiral organic molecule has proven to be an i...
The heterogeneous enantioselective hydrogenation of activated ketones over chirally modified platinu...
Prochiral substrates may undergo enantioselective hydrogenation when a chirally modified metal catal...
Prochiral substrates may undergo enantioselective hydrogenation when a chirally modified metal catal...
The previously proposed model for reactant–modifier interaction in the enantioselective hydrogenatio...
The enantioselective hydrogenation of α-ketoesters over supported platinum metal catalysts which hav...
The enantioselective hydrogenation of α-ketoesters over supported platinum metal catalysts which hav...
The enantioselective hydrogenation of α-ketoesters over supported platinum metal catalysts which hav...
The enantioselective hydrogenation of α-ketoesters over supported platinum metal catalysts which hav...
The enantioselective hydrogenation of a-ketoesters over a platinum surface modified by cinchona alka...
The enantioselective hydrogenation of a-ketoesters over a platinum surface modified by cinchona alka...
The enantioselective hydrogenation of a-ketoesters over a platinum surface modified by cinchona alka...
Enantio-differentiation in the asymmetric hydrogenation of α-ketoesters to α-hydroxyesters over plat...
The enantioselective hydrogenation of α-ketoesters to α-hydroxyesters over Pt/Al2O3 catalysts modifi...
A new chiral modifier pantoyl-naphthylethylamine (PNEA) was synthesized by reductive alkylation of 1...
Modification of a metal surface by a strongly adsorbed chiral organic molecule has proven to be an i...
The heterogeneous enantioselective hydrogenation of activated ketones over chirally modified platinu...
Prochiral substrates may undergo enantioselective hydrogenation when a chirally modified metal catal...
Prochiral substrates may undergo enantioselective hydrogenation when a chirally modified metal catal...
The previously proposed model for reactant–modifier interaction in the enantioselective hydrogenatio...
The enantioselective hydrogenation of α-ketoesters over supported platinum metal catalysts which hav...
The enantioselective hydrogenation of α-ketoesters over supported platinum metal catalysts which hav...
The enantioselective hydrogenation of α-ketoesters over supported platinum metal catalysts which hav...
The enantioselective hydrogenation of α-ketoesters over supported platinum metal catalysts which hav...
The enantioselective hydrogenation of a-ketoesters over a platinum surface modified by cinchona alka...
The enantioselective hydrogenation of a-ketoesters over a platinum surface modified by cinchona alka...
The enantioselective hydrogenation of a-ketoesters over a platinum surface modified by cinchona alka...
Enantio-differentiation in the asymmetric hydrogenation of α-ketoesters to α-hydroxyesters over plat...
The enantioselective hydrogenation of α-ketoesters to α-hydroxyesters over Pt/Al2O3 catalysts modifi...
A new chiral modifier pantoyl-naphthylethylamine (PNEA) was synthesized by reductive alkylation of 1...