Abstract
A metal-free and photo-free method for the perfluoroalkylative pyridylation of alkenes has been developed via a combination of computational and experimental studies. Density functional theory calculations and control experiments indicate that the homolysis of Rf-X (X = Br, I) bonds by the 4-cyanopyridine-boryl radicals in situ generated from 4-cyanopyridine and B2pin2 is the key step. Sequential addition of Rf radicals to alkenes and the selective cross-coupling of the resulting alkyl radicals and 4-cyanopyridine-boryl radicals gives alkene difunctionalization products with a quaternary carbon center. This method exhibits a broad substrate scope and good functional group compatibility.
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CITATION STYLE
Cao, J., Wang, G., Gao, L., Chen, H., Liu, X., Cheng, X., & Li, S. (2019). Perfluoroalkylative pyridylation of alkenes: Via 4-cyanopyridine-boryl radicals. Chemical Science, 10(9), 2767–2772. https://doi.org/10.1039/c8sc05237a
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