Publication | Closed Access
Development of Decarboxylative Coupling Processes for the Synthesis of Azomethines and Ketones
36
Citations
79
References
2011
Year
Asymmetric CatalysisAryl HalidesChemical EngineeringCross-coupling ReactionEngineeringNatural SciencesDiversity-oriented SynthesisOrganic ChemistryOrganometallic CatalysisCatalysisDecarboxylative Coupling ProcessesChemistryKetone SynthesisValuable IminesSynthetic ChemistryEnantioselective SynthesisBiomolecular Engineering
Abstract A bimetallic catalyst system has been developed that allows the synthesis of azomethines by a one‐pot three‐component decarboxylative coupling, starting from simple, nontoxic precursors, i.e. potassium α‐oxo carboxylates, aryl halides and primary amines. In the presence of 15 mol‐% copper/phenanthroline and 1 mol‐% Pd/dppf, a wide range of valuable imines is conveniently accessible in high yields at 100 °C, an unprecedentedly low temperature for redox‐neutral decarboxylative cross‐coupling reactions. Hydrogenation of the azomethine products leads to secondary amines. Alternatively, they can be hydrolyzed in situ to aryl ketones. The resulting ketone synthesis via azomethine intermediates is also of interest as it gives higher yields at much lower temperatures than the direct decarboxylative coupling of α‐oxo carboxylates with aryl halides.
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