Palladium Catalyzed Radical Fluorination of Arylacetic Acid Equivalents via α-Carbonyl Radicals

Abstract A palladium catalyzed highly chemo- and site-selective radical benzylic fluorination of arylacetic acids with Selectfluor has been developed. The reaction gives an expedient access to fluorinated acetic acids with exceptional α-selectivity. The fluorination proceeds via a pyridine directed, SET-induced formation of α-carbonyl radicals followed by a fluorine atom transfer (FAT) process involving a PdI-intermediate. DFT studies corroborated the experimental results.

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Publication Details

Journal
The Journal of Organic Chemistry
Published
2026-09-25
DOI
https://doi.org/10.1021/acs.joc.6c01202
Primary Topic
Fluorine in Organic Chemistry
Type
article
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article

Palladium Catalyzed Radical Fluorination of Arylacetic Acid Equivalents via α-Carbonyl Radicals

Anik Sen, Sukalyan Bhadra, Rupali Dasharath Shinde, Vimalbhai Hareshbhai Parmar
The Journal of Organic Chemistry
Fluorine in Organic Chemistry
article

Palladium Catalyzed Radical Fluorination of Arylacetic Acid Equivalents via α-Carbonyl Radicals

Anik Sen, Sukalyan Bhadra, Rupali Dasharath Shinde, Vimalbhai Hareshbhai Parmar
article en

Abstract

Abstract A palladium catalyzed highly chemo- and site-selective radical benzylic fluorination of arylacetic acids with Selectfluor has been developed. The reaction gives an expedient access to fluorinated acetic acids with exceptional α-selectivity. The fluorination proceeds via a pyridine directed, SET-induced formation of α-carbonyl radicals followed by a fluorine atom transfer (FAT) process involving a PdI-intermediate. DFT studies corroborated the experimental results.

The Journal of Organic Chemistry
Central Salt and Marine Chemicals Research Institute (IN), GITAM University (IN), Academy of Scientific and Innovative Research (IN)
Clean water and sanitation
Openalex Percentile: Top 13%
Fluorine in Organic Chemistry
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