A combination of directing groups and chiral anion phase-transfer catalysis for enantioselective fluorination of alkenes

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Abstract

We report a catalytic enantioselective electrophilic fluorination of alkenes to form tertiary and quaternary C(sp3)-F bonds and generate β-amino- and β-aryl-allylic fluorides. The reaction takes advantage of the ability of chiral phosphate anions to serve as solid-liquid phase transfer catalysts and hydrogen bond with directing groups on the substrate. A variety of heterocyclic, carbocyclic, and acyclic alkenes react with good to excellent yields and high enantioselectivities. Further, we demonstrate a one-pot, tandem dihalogenation-cyclization reaction, using the same catalytic system twice in series, with an analogous electrophilic brominating reagent in the second step.

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Wu, J., Wang, Y. M., Drljevic, A., Rauniyar, V., Phipps, R. J., & Dean Toste, F. (2013). A combination of directing groups and chiral anion phase-transfer catalysis for enantioselective fluorination of alkenes. Proceedings of the National Academy of Sciences of the United States of America, 110(34), 13729–13733. https://doi.org/10.1073/pnas.1304346110

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