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Temperature-dependent Fe Mössbauer spectroscopy and local structure of the mullite-type Bi2(FexGa1−x)4O9 (0.1≤x≤1) solid solution
Authors:Sven-Ulf Weber,Thorsten M. Gesing,Gö  tz Eckold,Reinhard X. Fischer,Fred-Jochen Litterst,Klaus-Dieter Becker
Affiliation:1. Institute of Physical and Theoretical Chemistry, Technische Universität Braunschweig, Hans-Sommer-Straße 10, D-38106 Braunschweig, Germany;2. Crystallography, FB05, Universität Bremen, Klagenfurter Straße, D-28359 Bremen, Germany;3. Solid State Chemical Crystallography, Universität Bremen, Leobener Straße NW2, D-28359 Bremen, Germany;4. Institut für Physikalische Chemie, Georg-August-Universität Göttingen, Tammannstraße 6, D-37077 Göttingen, Germany;5. Institute of Condensed Matter Physics, Technische Universität Braunschweig, Mendelssohnstraße 3, D-38106 Braunschweig, Germany
Abstract:The Bi2(FexGa1−x)4O9 oxide solid solution possessing a mullite-type structure has been investigated by 57Fe Mössbauer spectroscopy in dependence of composition (0.1≤x≤1) and temperature (293≤T/K≤1073). The spectra have been fitted with two doublets for tetrahedrally and octahedrally coordinated high-spin Fe3+ ions, respectively. The experimental areas of the subspectra were used to determine the distribution of iron on the two inequivalent structural sites. The fraction of iron cations occupying the octahedral site is found to increase with decreasing Fe content and the cation distribution is almost independent of temperature. The unusual temperature dependence of the quadrupolar splitting, QS, observed for the octahedral site with dQS/dT>0 is discussed in connexion with structural data for Bi2Fe4O9. The temperature dependence of Mössbauer isomer shifts and signal intensities is examined in the context of local vibrational properties of iron on the two inequivalent sites of the mullite-type lattice structure.
Keywords:A. Oxides   C. Mö  ssbauer spectroscopy   D. Local structure   D. Cation distribution   D. Vibrational properties
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