Copper(III) fluorides are catalytically competent, yet elusive, intermediates in cross-coupling. The synthesis of [PPh ][Cu (CF ) F] (2), the first stable (isolable) Cu -F, was accomplished via chloride addition to [Cu (CF ) (py)] (1) yielding [PPh ][Cu (CF ) Cl(py)] (1⋅Cl), followed by treatment with AgF. The Cu halides 1⋅Cl and 2 were fully characterized using nuclear magnetic resonance (NMR) spectroscopy, single crystal X-ray diffraction (Sc-XRD) and elemental analysis (EA). Complex 2 proved capable of forging C-CF bonds from silyl-capped alkynes. In-depth mechanistic studies combining probes, theoretical calculations, trapping of intermediate 4 ([PPh ][Cu (CF ) (C≡CPh)]) and radical tests unveil the key role of the Cu acetylides that undergo facile 2e reductive elimination furnishing the trifluoromethylated alkynes (RC≡CCF ), which are industrially relevant synthons in drug discovery, pharma and agrochemistry.
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http://dx.doi.org/10.1002/anie.202319412 | DOI Listing |
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