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In search of enantioselective catalysts for the Henry reaction: are two metal centres better than one?
58
Citations
36
References
2009
Year
Henry ReactionInorganic ChemistryChemical EngineeringEnantioselective CatalystsEngineeringEnantioselective SynthesisMetal CentresHeterogeneous CatalysisOrganometallic CatalysisCatalysisHomogeneous CatalysisChemistryHost–guest InteractionsCatalyst PreparationAsymmetric CatalysisAsymmetric Henry ReactionCatalytic SynthesisPolar Solvent
Catalysts for the asymmetric Henry reaction involving copper(II) complexes of the chiral Schiff bases N,N′-(1R,2R)-(−)-1,2-cyclohexylenebis(3-hydroxysalicylideneamine) (H21) and N,N′-(1R,2R)-(−)-1,2-cyclohexylenebis(3-ethoxysalicylideneamine) (H22), and H23, which is the reduced analogue of H21, have been studied. Whereas [Cu(1)] and [Cu(2)] give poor yields and enantioselectivity, [Cu(3)] produced moderate to high yields and enantioselectivities were optimal when reactions were carried out in toluene rather than a polar solvent. A significant finding is that both yield and enantioselectivity are enhanced when a second equivalent of Cu(OAc)2 is added to the catalyst. The single-crystal structures of [Cu(3)] and [Cu(1)(H2O)] are presented, and the host–guest interactions and molecular packing in the latter are compared with those in [Cu(2)(H2O)].
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