Publication | Closed Access
Synthesis of Aromatic Esters via Pd-Catalyzed Decarboxylative Coupling of Potassium Oxalate Monoesters with Aryl Bromides and Chlorides
260
Citations
31
References
2009
Year
Transition StateChemical EngineeringCross-coupling ReactionEngineeringAlkene MetathesisOrganic ChemistryOrganometallic CatalysisCatalysisSynthetic ChemistryChemistryAsymmetric CatalysisAromatic EstersPotassium Oxalate MonoestersFive-coordinate PdBiomolecular EngineeringAryl Bromides
Pd-catalyzed decarboxylative cross-coupling of aryl iodides, bromides, and chlorides with potassium oxalate monoesters has been discovered. This reaction is potentially useful for laboratory-scale synthesis of aryl and alkenyl esters. Bulky, electron-rich bidentate phosphine ligands are preferred in the reaction, whereas Cu is not needed for decarboxylation. Theoretical calculations suggest a five-coordinate Pd(II) transition state for decarboxylation with an energy barrier of approximately 30 kcal/mol.
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