• Title of article

    Nature of the chemical bond and prediction of radiation tolerance in pyrochlore and defect fluorite compounds

  • Author/Authors

    Gregory R. Lumpkin، نويسنده , , Miguel Pruneda، نويسنده , , Susana Rios، نويسنده , , Katherine L. Smith، نويسنده , , Kostya Trachenko، نويسنده , , Karl R. Whittle، نويسنده , , Nestor J. Zaluzec، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    7
  • From page
    1512
  • To page
    1518
  • Abstract
    The radiation tolerance of synthetic pyrochlore and defect fluorite compounds has been studied using ion irradiation. We show that the results can be quantified in terms of the critical temperature for amorphization, structural parameters, classical Pauling electronegativity difference, and disorder energies. Our results demonstrate that radiation tolerance is correlated with a change in the structure from pyrochlore to defect fluorite, a smaller unit cell dimension, and lower cation–anion disorder energy. Radiation tolerance is promoted by an increase in the Pauling cation–anion electronegativity difference or, in other words, an increase in the ionicity of the chemical bonds. A further analysis of the data indicates that, of the two possible cation sites in ideal pyrochlore, the smaller B-site cation appears to play the major role in bonding. This result is supported by ab initio calculations of the structure and bonding, showing a correlation between the Mulliken overlap populations of the B-site cation and the critical temperature.
  • Keywords
    Ab initio , Radiation damage , Pyrochlore
  • Journal title
    JOURNAL OF SOLID STATE CHEMISTRY
  • Serial Year
    2007
  • Journal title
    JOURNAL OF SOLID STATE CHEMISTRY
  • Record number

    1332689