Angewandte Chemie · 2018 · 16 citations · 29 references
Chemical EngineeringAsymmetric ProtonationEngineeringNatural SciencesDiversity-oriented SynthesisOrganic ChemistryDirect Enantioselective SynthesisCatalysisChemistryChiral Phosphoric AcidAsymmetric CatalysisSynthetic ChemistryEnantioselective SynthesisBiomolecular Engineering
Abstract The direct enantioselective synthesis of chiral azaheteroaryl ethylamines from vinyl‐substituted N‐heterocycles and anilines is reported. A chiral phosphoric acid (CPA) catalyst promotes dearomatizing aza‐Michael addition to give a prochiral exocyclic aryl enamine, which undergoes asymmetric protonation upon rearomatization. The reaction accommodates a broad range of N‐heterocycles, nucleophiles, and substituents on the prochiral centre, generating the products in high enantioselectivity. DFT studies support a facile nucleophilic addition based on catalyst‐induced LUMO lowering, with site‐selective, rate‐limiting, intramolecular asymmetric proton transfer from the ion‐paired prochiral intermediate.
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Yan Zhao, Donald G. Truhlar · Theoretical Chemistry Accounts · 2007 · 29.2K citations · Full text
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D. A. Benson, Mark S. Boguski, David J. Lipman et al. · Genomics · 1990 · 5.2K citations · Full text