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Visible-Light-Promoted Enantioselective Acylation and Alkylation of Aldimines Enabled by 9-Fluorenone Electron-Shuttle Catalysis
32
Citations
52
References
2024
Year
EngineeringCooperative FlnSynthetic PhotochemistryOrganic ChemistryChemistryChemical EngineeringMedicinal ChemistryPhotoredox ProcessElectron-shuttle CatalysisAldimines EnabledVisible-light-promoted Enantioselective AcylationStereoselective Synthesisα-Tertiary Amino KetonesPhotochemistryDiversity-oriented SynthesisCatalysisAsymmetric CatalysisEnantioselective SynthesisBiomolecular EngineeringNatural Sciences
Chiral acyclic α-tertiary amino ketones are widely present in various natural products and pharmaceuticals; however, the direct synthesis of this pharmacophore through a robust strategy still presents significant challenges. The emerging photocatalysis provides a powerful approach to construct chemical bonds that are difficult to form via a traditional two-electron pathway. Herein, we developed visible-light-induced chiral Lewis acid-catalyzed highly enantioselective acylation/alkylation of aldimines enabled by cooperative FLN (9-fluorenone) electron-shuttle catalysis via radical addition. An array of α-tertiary amino ketones, β-amino alcohols, and chiral amines were achieved with high yields and good to excellent stereocontrol (87 examples, up to 84% yield, 96% ee). These products can be easily transformed into valuable and bioactive skeletons. Extensive control experiments, detailed mechanism studies, and density functional theory calculations elucidated the reaction process and highlighted the crucial role played by FLN.
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