• Title of article

    Synthesis, structure and electrical studies of praseodymium doped barium zirconium titanate

  • Author/Authors

    Raghavendra Sagar، نويسنده , , Shivanand Madolappa، نويسنده , , Nagbasavanna Sharanappa، نويسنده , , R.L. Raibagkar، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2013
  • Pages
    7
  • From page
    119
  • To page
    125
  • Abstract
    Praseodymium (Pr) doped barium zirconium titanate with nominal composition (Ba1−xPrx)(Zr0.52Ti0.48)O3 (x = 0.1 and 0.2) were synthesized using solid state reaction method. X-ray analysis conform the formation of cubic phase Pr-doped barium zirconium titanate along with minor pyrochloric phase. The increase in grain size after primary investigation reveals the influence of Pr ions on the domain structure and its microstructure. In order to correlate the effect of the chemical composition with the conduction mechanism, different AC electrical parameters have been addressed. The frequency dependant tangent loss of the sample was less for both the ceramics. The temperature dependence results show that the dielectric parameters and resistivity increases as Pr-content in the ceramic increases; this is attributed to the grain size and dipole dynamics. Complex impedance (Z*) plots show frequency dependent behavior as the response for the grain resistance mechanisms. This mechanism has been represented by an equivalent circuit. The temperature dependence of the electrical conductivity and Seebeck coefficient showed n-type non-degenerated semiconductor in the measured temperature range. The temperature dependent conductivity measurement suggests a novel negative temperature coefficient of resistance behavior of the samples. Furthermore, the frequency dependent conductivity plot shows increasing behavior.
  • Keywords
    Electronic materials , Microstructure , Electrical properties , Dielectric properties , Transport properties , Powder diffraction
  • Journal title
    Materials Chemistry and Physics
  • Serial Year
    2013
  • Journal title
    Materials Chemistry and Physics
  • Record number

    1059919