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Structure and Specific Heat of Disordered and Ordered Titanium Monoxide TiOy
Authors:A A Valeeva  A A Rempel  A I Gusev
Institution:(1) Institute of Solid State Chemistry, Ural Branch, Russian Academy of Sciences, Ekaterinburg
Abstract:The structure of disordered and ordered titanium monoxide containing structural vacancies in both sublattices was studied by Xdashray diffraction. The symmetry of the monoclinic Ti5O5 superstructure (space group C2/m) was analyzed. The type and channel of the TiOy–Ti5O5 disorder–order transition was determined. The distribution functions of Ti and O atoms in the metal and nonmetal sublattices of titanium monoxide were calculated. The specific heats of TiOy titanium monoxides (0.8< y< 1.27) were measured by differential scanning calorimetry for the disordered and ordered states in the range from 340 to 600 K. The dependences of the specific heat, enthalpy, and entropy on the composition and structure of TiOy were found for the first time. A notable effect of the structural state on the specific heat was detected. In the indicated temperature range, the C p (T) dependence is adequately described by a function that accounts for the Debye effect and the electronic specific heat.
Keywords:titanium monoxide  nonstoichiometry  disorder–  order phase transition  Ti5O5 superstructure  vacancy channels  Xdashray diffraction" target="_blank">gif" alt="dash" align="MIDDLE" BORDER="0">ray diffraction  differential scanning calorimetry  specific heat
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