Publication | Closed Access
Enantio‐ and Diastereoselective Access to Distant Stereocenters Embedded within Tetrahydroxanthenes: Utilizing <i>ortho</i>‐Quinone Methides as Reactive Intermediates in Asymmetric Brønsted Acid Catalysis
82
Citations
78
References
2014
Year
Enantioselective SynthesisEngineeringDistant StereocentersNatural SciencesReactive IntermediatesDiversity-oriented SynthesisOrganic ChemistryCatalysisDiastereoselective AccessChemistryOrtho‐quinone MethidesChiral Binol‐based N‐triflyphosphoramideStereoselective SynthesisAsymmetric CatalysisSynthetic ChemistryDistant Stereocenters EmbeddedBiomolecular Engineering
Abstract A protocol for the highly enantioselective synthesis of 9‐substituted tetrahydroxanthenones by means of asymmetric Brønsted acid catalysis has been developed. A chiral binol‐based N‐triflyphosphoramide was found to promote the in situ generation of ortho‐quinone methides and their subsequent reaction with 1,3‐cyclohexanedione to provide the desired products with excellent enantioselectivities. In addition, a highly enantio‐ and diastereoselective Brønsted acid catalyzed desymmetrization of 5‐monosubstituted 1,3‐dicarbonyl substrates with ortho‐quinone methides gives rise to valuable tetrahydroxanthenes containing two distant stereocenters.
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