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Structural and electrical characteristics of rare earth simple perovskite oxide La0.57Nd0.1Pb0.33Mn0.8Ti0.2O3
Authors:A Dhahri  FIH Rhouma  E Dhahri
Institution:
  • a Unité de Physique des Solides, Département de Physique, Faculté des Sciences de Monastir, 5019, Tunisia
  • b Laboratoire de Physique appliqué, Département de physique, Faculté des sciences, de Sfax, 3018, Tunisia
  • c I3N and Physics Department, University of Aveiro, 3810-193 Aveiro, Portugal
  • Abstract:Polycrystalline La0.57Nd0.1Pb0.33Mn0.8Ti0.2O3 (LNPMT) is prepared by the solid-state reaction technique. The formation of single phase material was confirmed by X-ray diffraction studies, and it was found to be a rhombohedral phase at room temperature. The impedance plane plot shows semicircle arcs at different temperatures and an electrical equivalent circuit has been proposed to explain the impedance results. The frequency dependent conductivity spectra follow the universal power law. The activation energy deduced from analysis of the imaginary part of electric modulus and imaginary impedance is found to be ∼75 meV. Such a value of activation energy indicates that the conduction mechanism for the sample is due to electron hopping. The imaginary part of the electric modulus suggests that the relaxation describes the same mechanism at various temperatures.
    Keywords:A  Ceramic perovskites  A  Manganites  A  Ferroelectric  C  Impedance spectroscopy
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