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Mechanistic Studies on Lewis Acid Catalyzed Biginelli Reactions in Ionic Liquids: Evidence for the Reactive Intermediates and the Role of the Reagents
115
Citations
50
References
2012
Year
Mechanistic StudiesEngineeringOrganic ChemistryChemistryIon ProcessIonic Liquid EffectChemical EngineeringIonic LiquidsAnalytical ChemistryHomogeneous CatalysisImidazolium-based Ionic LiquidsIonic LiquidBiochemistryCatalysisDeep Eutectic SolventCatalytic SynthesisNatural SciencesReactive IntermediatesIonic ConductorMolecular CatalysisChemical Kinetics
This paper describes the use of common Lewis acids supported in imidazolium-based ionic liquids as the catalysts to promote the Biginelli reaction. The ionic liquid effect and the reaction mechanism are discussed on the basis of nuclear magnetic resonance (NMR), electrospray ionization mass spectrometry (ESI-MS), and theoretical calculations. Indeed, the results showed that the ionic medium plays a fundamental role in the synthesis of biologically active dihydropyrimidinones due to the stabilization of the charged intermediates proposed in the mechanism. When conducted in an ionic liquid as solvent, the reaction mechanism is more complex than in other Lewis acid catalyzed Biginelli reactions.
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