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Hydrofluoromethylation of alkenes with fluoroiodomethane and beyond

64

Citations

56

References

2021

Year

Abstract

A process for the direct hydrofluoromethylation of alkenes is reported for the first time. This straighforward silyl radical-mediated reaction utilises CH<sub>2</sub>FI as a non-ozone depleting reagent, traditionally used in electrophilic, nucleophilic and carbene-type chemistry, but not as a CH<sub>2</sub>F radical source. By circumventing the challenges associated with the high reduction potential of CH<sub>2</sub>FI being closer to CH<sub>3</sub>I than CF<sub>3</sub>I, and harnessing instead the favourable bond dissociation energy of the C-I bond, we demonstrate that feedstock electron-deficient alkenes are converted into products resulting from net hydrofluoromethylation with the intervention of (Me<sub>3</sub>Si)<sub>3</sub>SiH under blue LED activation. This deceptively simple yet powerful methodology was extended to a range of (halo)methyl radical precursors including ICH<sub>2</sub>I, ICH<sub>2</sub>Br, ICH<sub>2</sub>Cl, and CHBr<sub>2</sub>F, as well as CH<sub>3</sub>I itself; this latter reagent therefore enables direct hydromethylation. This versatile chemistry was applied to <sup>18</sup>F-, <sup>13</sup>C-, and D-labelled reagents as well as complex biologically relevant alkenes, providing facile access to more than fifty products for applications in medicinal chemistry and positron emission tomography.

References

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