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Enantioselective Enolate Protonation with Chiral Anilines: Scope, Structural Requirements, and Mechanistic Implications
44
Citations
25
References
2000
Year
Asymmetric CatalysisEngineeringBiochemistryStructural RequirementsNatural SciencesProton TransferOrganic ChemistryEnantioselective Enolate ProtonationDirect Proton TransferChemistryChiral AnilinesLithiated Amide 5High EnantioselectivityStereoselective SynthesisSynthetic ChemistryEnantioselective SynthesisBiomolecular Engineering
High enantioselectivity has been demonstrated in the protonation of N,N-diisopropyl amides (Table 1, entries 1−4, 7, and 10−13) derived from certain β,γ unsaturated acids. Depending on double bond geometry and the degree of substitution at the γ-carbon, γ-protonation can be a competing reaction in the case of the aliphatic substrates 12, 14b, 14d, and 18. The evidence is most consistent with a mechanism that involves proton transfer from 1a to a mixed aggregate consisting of enolate 4a and the lithiated amide 5, but direct proton transfer from 1a to the enolate is not ruled out.
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