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Oxidative Fluorination of Selenium and Tellurium Compounds using a Thermally Stable Phosphonium SF5 - Salt Accessible from SF6.


ABSTRACT: Fluorinated group 16 moieties are attractive building blocks in synthetic chemistry but only few synthetic methods are available to prepare them. Herein, we report a new oxidative fluorination reagent capable of stabilizing reactive fluorinated anions. It consists of an SF5 - anion and a chemically inert phosphonium cation and is exceptionally thermally stable. Accordingly, it was used to generate the SeF5 - and TeF5 - anions from the elemental chalcogens and to prepare the unknown tetrafluoro(phenyl)-λ5 -selenate PhSeF4 - and -tellurate PhTeF4 - from the corresponding diphenyl dichalcogenides. In addition, we show that further derivatization of [PhTeF4 ]- by oxidation to trans-PhTeF4 O- and subsequent alkylation gives access to a new class of trans-(alkoxy)(phenyl)tetrafluoro-λ6 -tellanes (trans-PhTeF4 OR), thus providing an approach to introduce the functional group into organic molecules.

SUBMITTER: Eder T 

PROVIDER: S-EPMC9826459 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Oxidative Fluorination of Selenium and Tellurium Compounds using a Thermally Stable Phosphonium SF<sub>5</sub> <sup>-</sup> Salt Accessible from SF<sub>6</sub>.

Eder Tobias T   Buß Florenz F   Wilm Lukas F B LFB   Seidl Michael M   Podewitz Maren M   Dielmann Fabian F  

Angewandte Chemie (International ed. in English) 20220912 42


Fluorinated group 16 moieties are attractive building blocks in synthetic chemistry but only few synthetic methods are available to prepare them. Herein, we report a new oxidative fluorination reagent capable of stabilizing reactive fluorinated anions. It consists of an SF<sub>5</sub> <sup>-</sup> anion and a chemically inert phosphonium cation and is exceptionally thermally stable. Accordingly, it was used to generate the SeF<sub>5</sub> <sup>-</sup> and TeF<sub>5</sub> <sup>-</sup> anions from  ...[more]

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