• Title of article

    Kinetic lattice Monte Carlo model for oxygen vacancy diffusion in praseodymium doped ceria: Applications to materials design

  • Author/Authors

    Pratik P. Dholabhai، نويسنده , , Shahriar Anwar، نويسنده , , James B. Adams، نويسنده , , Peter Crozier، نويسنده , , Renu Sharma، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    7
  • From page
    811
  • To page
    817
  • Abstract
    Kinetic lattice Monte Carlo (KLMC) model is developed for investigating oxygen vacancy diffusion in praseodymium-doped ceria. The current approach uses a database of activation energies for oxygen vacancy migration, calculated using first-principles, for various migration pathways in praseodymium-doped ceria. Since the first-principles calculations revealed significant vacancy–vacancy repulsion, we investigate the importance of that effect by conducting simulations with and without a repulsive interaction. Initially, as dopant concentrations increase, vacancy concentration and thus conductivity increases. However, at higher concentrations, vacancies interfere and repel one another, and dopants trap vacancies, creating a “traffic jam” that decreases conductivity, which is consistent with the experimental findings. The modeled effective activation energy for vacancy migration slightly increased with increasing dopant concentration in qualitative agreement with the experiment. The current methodology comprising a blend of first-principle calculations and KLMC model provides a very powerful fundamental tool for predicting the optimal dopant concentration in ceria related materials.
  • Keywords
    DFT+U , Pr-doped ceria , Kinetic lattice Monte Carlo , Oxygen vacancy diffusion , Ionic conductivity
  • Journal title
    JOURNAL OF SOLID STATE CHEMISTRY
  • Serial Year
    2011
  • Journal title
    JOURNAL OF SOLID STATE CHEMISTRY
  • Record number

    1335068