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Copper-Catalyzed γ-Selective and Stereospecific Substitution Reaction of Allylic Carbonates with Diboron: Efficient Route to Chiral Allylboron Compounds
240
Citations
7
References
2005
Year
Diboron ReagentChemical EngineeringActive AllylboronatesAllylic CarbonatesAllylboron CompoundsEngineeringCross-coupling ReactionStereospecific Substitution ReactionChiral Allylboron CompoundsOrganic ChemistryOrganometallic CatalysisCatalysisStereoselective SynthesisChemistryAsymmetric CatalysisEnantioselective SynthesisBiomolecular Engineering
A copper-catalyzed gamma-selective and stereospecific substitution reaction of allylic carbonates with a diboron reagent affording allylboron compounds is described. Boryl group was selectively introduced at the gamma-position of the leaving carbonate group. Functionalized allylboronates that have an acetal, ester, or isolated alkene were prepared. The reaction of optically active allylic carbonates underwent complete alpha-to-gamma chirality transfer with anti-stereochemistry to produce optically active allylboronates having a boron-substituted stereogenic center.
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