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Gold(I)‐Catalyzed Asymmetric Desymmetrization of <i>meso‐</i>Alkynyl Diols and Kinetic Resolution of the Corresponding <scp>dl</scp>‐Diols: Effects of Celite Filtration and Silver Salts
35
Citations
101
References
2015
Year
Asymmetric DesymmetrizationEngineeringKinetic ResolutionOrganic ChemistryChemistryChemical EngineeringNovel OrganocatalystsOrganometallic CatalysisHomogeneous CatalysisStereoselective SynthesisSilver SaltSilver Salt Co-catalystsChiral DiphosphineCatalysisAsymmetric CatalysisEnantioselective SynthesisBiomolecular EngineeringCelite FiltrationMolecular CatalysisChemical Kinetics
The asymmetric desymmetrization of meso-2-alkynylbenzenediols through the use of a combination of axially chiral diphosphine(AuCl)2 precatalysts and silver salt co-catalysts gave optically active isochromene compounds with high enantioselectivities in good yields. The corresponding DL-diol isomers underwent efficient kinetic resolution to give the cyclized isochromenes and recovered diols with high enantioselectivities under similar conditions. The high reactivity and selectivity in the desymmetrization of the meso-diols is independent of the combination of axially chiral diphosphine(AuCl)2 precatalyst and silver salt co-catalyst, whereas the corresponding tricarbonylchromium complexes of alkynylbenzenediols were affected by the combination of the diphosphine(AuCl)2 and silver salt. The reactivity was largely dependent on the nature of the gold(I) species.
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