Local structure and ionic conductivity in the Zr(2)Y(2)O(7)-Y(3)NbO(7) system.

  • Norberg, ST
  • Ahmed, I
  • Hull, S
  • Marrocchelli, D
  • Madden, PA
Publication date
May 2009
Publisher
IOP Publishing
Journal
Journal of Physics Condensed Matter

Abstract

The Zr(0.5-0.5x)Y(0.5+0.25x)Nb(0.25x)O(1.75) solid solution possesses an anion-deficient fluorite structure across the entire 0≤x≤1 range. The relationship between the disorder within the crystalline lattice and the preferred anion diffusion mechanism has been studied as a function of x, using impedance spectroscopy measurements of the ionic conductivity (σ), powder neutron diffraction studies, including analysis of the 'total' scattering to probe the nature of the short-range correlations between ions using reverse Monte Carlo (RMC) modelling, and molecular dynamics (MD) simulations using potentials derived with a strong ab initio basis. The highest total ionic conductivity (σ = 2.66 × 10(-2) Ω(-1) cm(-1) at 1473 K) is measured for the Zr(...

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