Fluorocyclisation via I(I)/I(III) catalysis: A concise route to fluorinated oxazolines

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Abstract

Herein, we describe a catalytic fluorooxygenation of readily accessible N-allylcarboxamides via an I(I)/I(III) manifold to generate 2-oxazolines containing a fluoromethyl group. Catalysis is conditional on the oxidation competence of Selectfluor®, whilst HF serves as both a fluoride source and Brønsted acid activator. The C(sp3)–F bond of the mono-fluoromethyl unit and the C(sp3)–O bond of the ring are aligned in a synclinal relationship thereby engaging in stabilising hyperconjugative interactions with vicinal, electron-rich σ-bonds (σC–C→σ*C–F and σC–H→σ*C–O). This manifestation of the stereoelectronic gauche effect was established by X-ray crystallographic analysis of a representative example. Given the importance of fluorine in drug discovery, its ability to modulate conformation, and the prevalence of the 2-oxazoline scaffold in Nature, this strategy provides a rapid entry into an important bioisostere class.

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Scheidt, F., Thiehoff, C., Yilmaz, G., Meyer, S., Daniliuc, C. G., Kehr, G., & Gilmour, R. (2018). Fluorocyclisation via I(I)/I(III) catalysis: A concise route to fluorinated oxazolines. Beilstein Journal of Organic Chemistry, 14, 1021–1027. https://doi.org/10.3762/BJOC.14.88

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