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  • 1965-1969  (1)
  • 1969  (1)
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  • 1965-1969  (1)
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  • 1
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: The preparation of CsNb4Cl11, CsNb4Br11 and RbNb4Cl11 is described. Especially the chlorides can be isolated by means of chemical transport reactions. The compounds are isotypic (space group Pmma, CsNb4Cl11: a = 16.19, b = 6.91, c = 6.67 Å; CsNb4Br11: a = 17.04, b = 7.31, c = 7.01 Å).The occurance of planar Nb4 clusters is an interesting feature of the structure. The compounds exhibit a slight temperature independent paramagnetism (χmol = 283 · 10-6 for CsNb4Cl11 and 384 · 10-6 cm3 mol-1 for CsNb4Br11). This can be discussed in terms of five metal-metal bonds being formed by ten d-electrons belonging to each Nb4 cluster.The hitherto known halides of niobium and tantalum with the oxidation number 2.5 contain octahedral Nb6 clusters.
    Notes: Die Darstellung von CsNb4Cl11, CsNb4Br11 und RbNb4Cl11 wird beschrieben. Zur Isolierung der Chloride eignet sich besonders gut die Methode des chemischen Transports. Die Verbindungen sind isotyp (Raumgruppe Pmma, CsNb4Cl11: a = 16, 19, b = 6,91, c = 6,67 Å; CsNb4Br11: a = 17,04, b = 7,31, c = 7,01 Å).Neu ist das Auftreten von Nb4-Rauten. Der geringe temperaturunabhängige Paramagnetismus der Verbindungen (χMol = 283 · 10(-6 für CsNb4Cl11 und 384 · 10-6 cm3 Mol-1 für CsNb4Br11) kann mit der Ausbildung von fünf Metall-Metall-Bindungen in der Nb4-Raute erklärt werden.Die bisher bekannten Halogenide des Niobs und Tantals mit der Oxydationsstufe 2,5 enthalten oktaedrische Me6-Gruppen.
    Additional Material: 4 Ill.
    Type of Medium: Electronic Resource
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