Publication | Closed Access
Transition-Metal-Free Oxidative α-C–H Amination of Ketones via a Radical Mechanism: Mild Synthesis of α-Amino Ketones
114
Citations
47
References
2014
Year
Available Ammonium IodideEngineeringPharmaceutical Agent AmfepramoneOrganic ChemistryMild SynthesisChemistryMedicinal Chemistryα-Amino KetonesRadical PathwayOrganometallic CatalysisRadical MechanismCross-coupling ReactionBiochemistryDiversity-oriented SynthesisCatalysisCatalytic SynthesisBiomolecular EngineeringNatural SciencesMolecular CatalysisSynthetic Chemistry
A transition-metal-free direct α-C-H amination of ketones has been developed using commercially available ammonium iodide as the catalyst and sodium percarbonate as the co-oxidant. A wide range of ketone ((hetero)aromatic or nonaromatic ketones) and amine (primary/secondary amines, anilines, or amides) substrates undergo cross-coupling to generate synthetically useful α-amino ketones. The mechanistic studies indicated that a radical pathway might be involved in the reaction process. The utility of the method is highlighted through a concise one-step synthesis of the pharmaceutical agent amfepramone.
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