Journal of the American Chemical Society · 2000 · 156 citations · 14 references
Chemical EngineeringComplex 2AEngineeringCoordination ComplexC2-symmetric ComplexesChiral Lewis AcidsOrganic ChemistryPyruvate EstersOrganometallic CatalysisCatalysisChemistrySynthetic UtilityAsymmetric CatalysisEnantioselective SynthesisBiomolecular Engineering
The C2-symmetric complexes [Cu(S,S)-tert-butylbis(oxazolinyl)](SbF6)2 (2a), its bis(aquo) counterpart [Cu(S,S)-tert-butylbis(oxazolinyl)(H2O)2](SbF6)2 (4), and [Cu(S,S)-phenylbis(oxazolinyl)](OTf)2 (1c) have been shown to catalyze the enantioselective ene reaction between glyoxylate esters and various olefins. Monosubstituted, disubstituted, and trisubstituted olefins each react with ethyl glyoxylate in the presence of 0.2−10 mol % of catalysts 1, 2, and 4 to afford the ene products in good yield and enantioselectivity. Complex 2a has also been shown to catalyze the addition of 1,1-disubstituted olefins to methyl pyruvate in good yields (76−95%) and excellent enantioselectivies (≥98% ee). The synthetic utility of the glyoxylate−ene reaction was demonstrated by conversion of the resulting α-hydroxy ester into the corresponding methyl ester, free acid, Weinreb amide, and α-azido ester, all with no detectable racemization.
14
Andrew S. Thompson, Guy R. Humphrey, A. M. DEMARCO et al. · The Journal of Organic Chemistry · 1993 · 300 citations
Direct Conversion, Chemical Engineering, Chemical Measurement +9
David A. Evans, Jerry A. Murry, Peter Matt et al. · Angewandte Chemie International Edition in English · 1995 · 285 citations
Enantioselective Diels–alder Reaction, Chemical Engineering, Enantioselective Synthesis +12
David A. Evans, Tomislav Rovis, Marisa C. Kozlowski et al. · Journal of the American Chemical Society · 1999 · 170 citations
Inorganic Chemistry, Chemical Engineering, Silylketene Acetals +13