Publication | Closed Access
Polarity‐Reversed Allylations of Aldehydes, Ketones, and Imines Enabled by Hantzsch Ester in Photoredox Catalysis
125
Citations
30
References
2016
Year
Photoredox CatalysisEngineeringPolarity‐reversed AllylationsSynthetic PhotochemistryOrganic ChemistryChemistryPolarity ReversalChemical EngineeringPhotoredox ProcessOrganometallic CatalysisStereoselective SynthesisCross-coupling ReactionPhotochemistryDiversity-oriented SynthesisHantzsch EsterCatalysisPolarity‐reversed AllylationAsymmetric CatalysisEnantioselective SynthesisBiomolecular EngineeringSynthetic PlanningNatural SciencesSynthetic Chemistry
Abstract The polarity reversal (umpolung) reaction is an invaluable tool for reversing the chemical reactivity of carbonyl and iminyl groups, which subsequent cross‐coupling reactions to form C−C bonds offers a unique perspective in synthetic planning and implementation. Reported herein is the first visible‐light‐induced polarity‐reversed allylation and intermolecular Michael addition reaction of aldehydes, ketones, and imines. This chemoselective reaction has broad substrate scope and the engagement of alkyl imines is reported for the first time. The mechanistic investigations indicate the formation of ketyl (or α‐aminoalkyl) radicals from single‐electron reduction, where the Hantzsch ester is crucial as the electron/proton donor and the activator.
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