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- W4384023369 abstract "Abstract The purely chemical synthesis of fluorine is a spectacular reaction which for more than a century had been believed to be impossible. In 1986, it was finally experimentally achieved, but since then this important reaction has not been further studied and its detailed mechanism had been a mystery. The known thermal stability of MnF 4 casts serious doubts on the originally proposed hypothesis that MnF 4 is thermodynamically unstable and decomposes spontaneously to a lower manganese fluoride and F 2 . This apparent discrepancy has now been resolved experimentally and by electronic structure calculations. It is shown that the reductive elimination of F 2 requires a large excess of SbF 5 and occurs in the last reaction step when in the intermediate [SbF 6 ][MnF 2 ][Sb 2 F 11 ] the addition of one more SbF 5 molecule to the [SbF 6 ] − anion generates a second tridentate [Sb 2 F 11 ] − anion. The two tridentate [Sb 2 F 11 ] − anions then provide six fluorine bridges to the Mn atom thereby facilitating the reductive elimination of the two fluorine ligands as F 2 ." @default.
- W4384023369 created "2023-07-13" @default.
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- W4384023369 date "2023-08-22" @default.
- W4384023369 modified "2023-10-17" @default.
- W4384023369 title "The Crucial Role of Sb<sub>2</sub>F<sub>10</sub> in the Chemical Synthesis of F<sub>2</sub>" @default.
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- W4384023369 doi "https://doi.org/10.1002/anie.202307218" @default.
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