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  • 1
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 112 (1979), S. 2718-2729 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Tetrasubstituted Tetrazenes (Me3E)2N—N = N—N(EMe3)2 (E = Si, Ge, Sn): Preparation, Characterization, and DecompositionTetrakis(trimethylsilyl)tetrazene (1) is formed in almost quantitative yield by the catalytic dimerization of bis(trimethylsilyl)diazene with silicon tetrafluoride. The tetrazene N4H4, obtained as a result of protolysis of 1 with trifluoroacetic acid, is converted quantitatively into tetrakis-(trimethylgermyl)tetrazene (2) and tetrakis(trimethylstannyl)tetrazene (3) by Me3ENR2 (E = Ge, Sn). The colourless, crystalline tetrazenes 1-3 have 2-tetrazene constitution, trans-configuration and planar conformation of E4N4-skeleton. The thermolysis of the tetrazenes above 100-150°C occurs under nitrogen evolution mainly into (Me3Si)2NH for 1, (Me3Ge)4N2 for 2, and a mixture of (Me3Sn)3N and (Me3Sn)2 for 3. The tetrazenes 1 and 2 photolyse easily to (Me3E)3N and Me3EN3, whereas 3 reacts by photolysis to form (Me3Sn)3N, (Me3Sn)2, and N2.
    Notes: Tetrakis(trimethylsilyl)tetrazen (1) entsteht in fast quantitativer Ausbeute durch katalytische Dimerisierung von Bis(trimethylsilyl)diazen mit Siliciumtetrafluorid. Das aus 1 durch Protolyse mit Trifluoressigsäure erhältliche Tetrazen N4H4 läßt sich mittels Me3ENR2 (E = Ge, Sn) quantitativ in Tetrakis(trimethylgermyl)tetrazen (2) sowie Tetrakis(trimethylstannyl)tetrazen (3) umwandeln. Die farblosen, kristallisierten Tetrazene 1-3 haben 2-Tetrazen-Konstitution, trans-Konfiguration sowie planare Konformation des E4N4-Gerüsts. Die Thermolyse der Tetrazene oberhalb von 100-150°C führt unter Stickstoffentwicklung hauptsächlich zu (Me3Si)2NH im Falle von 1, (Me3Ge)4N2 im Falle von 2 sowie einem Gemisch von (Me3Sn)3N und (Me3Sn)2 im Falle von 3. Die Tetrazene 1 und 2 photolysieren rasch in (Me3E)3N und Me3EN3, während 3 photolytisch in (Me3Sn)3N, (Me3Sn)2 und N2 übergeht.
    Additional Material: 3 Tab.
    Type of Medium: Electronic Resource
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