Catalytic Appel fluorination of alcohols with potassium fluoride.

Mondal, Anirban; Struijs, Job J C; Doyle, Caleb J N; Chen, Zijun; Wang, Zian; Tangamornchaipattana, Worawit; Allais, Christophe; Richardson, Paul F et al. · Science · 2026

basic_science · Level V

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Abstract

Appel halogenation reactions are widely used to convert alcohols to alkyl halides but are not suitable to prepare alkyl fluorides because fluoride is sequestered as a difluorophosphorane. In this work, we introduce bench-stable neopentoxyphosphonium salts to solve this enduring challenge. With these reagents, various alcohols undergo fluorination with potassium fluoride under hydrogen bonding phase-transfer catalysis, a manifold offering a pathway to enantioselective fluorination of alcohols. Mechanistically, a neopentoxyfluorophosphorane is formed, which undergoes reversible exchange with the alcohol substrate in preference to difluorophosphorane formation. The catalyst assists with potassium fluoride solubilization and with phosphorus-fluorine bond dissociation, leading to the alkoxyphosphonium fluoride ion pair undergoing stereoinvertive fluorination. Turnover results from stronger binding of the catalyst to fluoride than phosphine oxide, the by-product of the reaction, which is recyclable as starting material for the synthesis of the phosphonium reagents.