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Asymmetric Coupling of Carbon‐Centered Radicals Adjacent to Nitrogen: Copper‐Catalyzed Cyanation and Etherification of Enamides
94
Citations
57
References
2020
Year
Chemical EngineeringCross-coupling ReactionEngineeringCarbon‐centered Radicals AdjacentAmino AcidsNatural SciencesRadical (Chemistry)Diversity-oriented SynthesisChiral α-Cyano AmidesOrganic ChemistryAsymmetric CouplingCatalysisChemistryα-Cyano EstersAsymmetric CatalysisEnantioselective SynthesisBiomolecular Engineering
The first copper-catalyzed asymmetric cyanation and etherification reactions of enamides have been established, where a carbon-centered radical adjacent to a nitrogen atom (CRAN) is enantioselectively trapped by a chiral copper(II) species. Moreover, the asymmetric cyanation of vinyl esters was disclosed as well. These reactions feature very mild reaction conditions and high functional group tolerance, and give a series of chiral α-cyano amides, α-cyano esters and α-hemiaminals in good yields with excellent enantioselectivity. The chiral α-cyano amides can be easily converted into enantioenriched 1,2-diamines and amino acids.
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