Publication | Open Access
Cobalt‐Catalyzed Wagner–Meerwein Rearrangements with Concomitant Nucleophilic Hydrofluorination
25
Citations
57
References
2023
Year
Cross-coupling ReactionEngineeringAlkene MetathesisCobalt-catalyzed Wagner-meerwein RearrangementCobalt‐catalyzed Wagner–meerwein RearrangementsWagner-meerwein RearrangementGem-disubstituted AllylarenesFluorous SynthesisOrganic ChemistryOrganometallic CatalysisCatalysisChemistryAsymmetric CatalysisBiomolecular Engineering
We report a cobalt-catalyzed Wagner-Meerwein rearrangement of gem-disubstituted allylarenes that generates fluoroalkane products with isolated yields up to 84 %. Modification of the counteranion of the N-fluoropyridinium oxidant suggests the substrates undergo nucleophilic fluorination during the reaction. Subjecting the substrates to other known metal-mediated hydrofluorination procedures did not lead to observable 1,2-aryl migration. Thus, indicating the unique ability of these cobalt-catalyzed conditions to generate a sufficiently reactive electrophilic intermediate capable of promoting this Wagner-Meerwein rearrangement.
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