Publication | Closed Access
Metal‐Free Formal Oxidative C−C Coupling by In Situ Generation of an Enolonium Species
118
Citations
66
References
2017
Year
Situ GenerationEngineeringOrganic ChemistryCarbonyl GroupChemistryPolarity ReversalChemical EngineeringCarbonyl CentersEnolonium SpeciesOrganometallic CatalysisInorganic ChemistryCross-coupling ReactionDiversity-oriented SynthesisCatalysisAsymmetric CatalysisEnantioselective SynthesisNatural SciencesElectrosynthesisSynthetic Chemistry
Much contemporary organic synthesis relies on transformations that are driven by the intrinsic, so-called "natural", polarity of chemical bonds and reactive centers. The design of unconventionally polarized synthons is a highly desirable strategy, as it generally enables unprecedented retrosynthetic disconnections for the synthesis of complex substances. Whereas the umpolung of carbonyl centers is a well-known strategy, polarity reversal at the α-position of a carbonyl group is much rarer. Herein, we report the design of a novel electrophilic enolonium species and its application in efficient and chemoselective, metal-free oxidative C-C coupling.
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