Publication | Closed Access
Unlocking Hydrogenation for C–C Bond Formation: A Brief Overview of Enantioselective Methods
133
Citations
62
References
2011
Year
Alcohol Oxidation LevelEngineeringOrganic ChemistryChemistryChemical EngineeringEnantioselective MethodsOrganometallic CatalysisC–c Bond FormationHomogeneous CatalysisCross-coupling ReactionDiversity-oriented SynthesisTransfer Hydrogenation ConditionsDiscrete Alcohol OxidationCatalysisHydrogenAsymmetric CatalysisEnantioselective SynthesisBiomolecular EngineeringReaction EngineeringNatural SciencesElectrosynthesisBrief Overview
Hydrogenation of π-unsaturated reactants in the presence of carbonyl compounds or imines promotes reductive C-C coupling, providing a byproduct-free alternative to stoichiometric organometallic reagents in an ever-increasing range of C=X (X = O, NR) additions. Under transfer hydrogenation conditions, hydrogen exchange between alcohols and π-unsaturated reactants triggers generation of electrophile-nucleophile pairs, enabling carbonyl addition directly from the alcohol oxidation level, bypassing discrete alcohol oxidation and generation of stoichiometric byproducts.
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