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- W2103315876 abstract "The first fluoroxyfluorofullerene C60F17OF (A) has been isolated from the fluorination of [60]fullerene with a mixture of MnF3 and K2NiF6 at 480 °C. This compound has a shorter HPLC retention time than the isomeric fluorofullerene ethers (oxahomofullerenes) and is less stable towards EI mass spectrometry. It fragments by losing OF as a single entity and shows no formation of C60O as a fragment ion. By contrast, the ethers fragment by first losing a number of F atoms and then CO, and ultimately show also the presence of C60O, whilst epoxides lose CO as a main fragmentation step and do not give C60O. The first oxahomofluorofullerenol C60F17O.OH (B) has been isolated from the UV-irradiation of a toluene solution of C60F18 in air during 65 h and readily eliminates HF due to adjacent F and OH groups during EI mass spectrometry. The structures of both the compounds have been deduced from 1D and 2D 19F NMR spectroscopy. Just as oxygen inserts into FCCF bonds of C60F18 to give ethers, so insertion into a CF bond gives A. The oxahomofluorofullerenol B is produced by SN2′ substitution of F by OH, followed by oxygen insertion into a 6:5-bond (αβ to the OH group) giving a motif not seen previously in fluorofullerenes." @default.
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- W2103315876 date "2003-06-01" @default.
- W2103315876 modified "2023-10-06" @default.
- W2103315876 title "Isolation and characterisation of both the first fluoroxyfluorofullerene C60F17OF and oxahomofluorofullerenol C60F17O.OH" @default.
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- W2103315876 doi "https://doi.org/10.1016/s0022-1139(03)00014-9" @default.
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