A process for the direct hydrofluoromethylation of alkenes is reported for the first time. This straighforward silyl radical-mediated reaction utilises CHFI as a non-ozone depleting reagent, traditionally used in electrophilic, nucleophilic and carbene-type chemistry, but not as a CHF radical source. By circumventing the challenges associated with the high reduction potential of CHFI being closer to CHI than CFI, 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 (MeSi)SiH under blue LED activation. This deceptively simple yet powerful methodology was extended to a range of (halo)methyl radical precursors including ICHI, ICHBr, ICHCl, and CHBrF, as well as CHI itself; this latter reagent therefore enables direct hydromethylation. This versatile chemistry was applied to F-, 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.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8457377PMC
http://dx.doi.org/10.1039/d1sc03421aDOI Listing

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Article Synopsis
  • The study presents a method for 1,4-hydrofluoromethylation of terminal-alkene-derived 1,3-enynes using visible-light photoredox catalysis and sodium fluoromethylsulfinate.
  • This approach allows for the creation of various di- and trisubstituted allenes under mild conditions.
  • The effectiveness of the method is showcased through large-scale reactions and further modifications of the allene products.
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Photoredox-Catalyzed and Silane-Mediated Hydrofluoromethylation of Unactivated Alkenes with Fluoroiodomethane in Water.

Org Lett

February 2023

Key Laboratory of Organofluorine Chemistry, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Science, Chinese Academy of Science, 345 Lingling Lu, Shanghai 200032, China.

The first hydrofluoromethylation of unactivated alkenes with fluoroiodomethane and hydrosilanes is developed by merging photoredox catalysis and silane-mediated deiodination processes. The key to the success of this reaction is the use of water as the solvent to enhance the activity of CHF radical toward unactivated alkenes.

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A process for the direct hydrofluoromethylation of alkenes is reported for the first time. This straighforward silyl radical-mediated reaction utilises CHFI as a non-ozone depleting reagent, traditionally used in electrophilic, nucleophilic and carbene-type chemistry, but not as a CHF radical source. By circumventing the challenges associated with the high reduction potential of CHFI being closer to CHI than CFI, 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 (MeSi)SiH under blue LED activation.

View Article and Find Full Text PDF

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