Publication | Closed Access
Direct, Catalytic Monofluorination of sp<sup>3</sup> C–H Bonds: A Radical-Based Mechanism with Ionic Selectivity
185
Citations
64
References
2014
Year
Chemical EngineeringRadical-based MechanismCatalytic MonofluorinationEngineeringNatural SciencesMolecular BiologyOrganometallic ElectrochemistryF NmrOrganic ChemistryCatalytic SpIonic SelectivityCatalysisOrganometallic CatalysisChemistryFluorous SynthesisMolecular CatalysisHalogenationRadical Chain Mechanism
Recently, our group unveiled a system in which an unusual interplay between copper(I) and Selectfluor effects mild, catalytic sp(3) C-H fluorination. Herein, we report a detailed reaction mechanism based on exhaustive EPR, (19)F NMR, UV-vis, electrochemical, kinetic, synthetic, and computational studies that, to our surprise, was revealed to be a radical chain mechanism in which copper acts as an initiator. Furthermore, we offer an explanation for the notable but curious preference for monofluorination by ascribing an ionic character to the transition state.
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