• O. Noguera
  • M. Smirnov
  • P. Mirgorodsky
  • T. Merle-Méjean
  • P. Thomas
  • J. C. Champarnaud-Mesjard

The equilibrium geometry and energy of formation of the polymer molecules (TeO2)n with n=2–6 were studied within the ab initio B3LYP method. For each n greater than 2, several stable conformers were found. They are classified into four homologue series: the cyclic molecules built up of corner-sharing TeO3 pyramids, chain molecules built up of edge-sharing TeO4 units, cyclic molecules built up of edge-sharing TeO4 units, and three-dimensional framework structures built up predominantly of corner-sharing TeO4 units. The latter structures were shown to possess the lowest energy of formation whose limit at n→∞ was found to agree well with the experimental value of the cohesive energy in paratellurite. These molecules could be representative of the local structures in TeO2 glass.

Original languageEnglish
JournalPhysical Review B - Condensed Matter and Materials Physics
Volume68
Issue number9
DOIs
StatePublished - 2003

    Scopus subject areas

  • Electronic, Optical and Magnetic Materials
  • Condensed Matter Physics

ID: 73030202