Title of article
Prediction of high-temperature point defect formation in TiO2 from combined ab initio and thermodynamic calculations Original Research Article
Author/Authors
J. He، نويسنده , , R.K. Behera، نويسنده , , M.W. Finnis، نويسنده , , X. Li، نويسنده , , E.C. Dickey، نويسنده , , S.R. Phillpot، نويسنده , , S.B Sinnott، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2007
Pages
13
From page
4325
To page
4337
Abstract
A computational approach that integrates ab initio electronic structure and thermodynamic calculations is used to determine point defect stability in rutile TiO2 over a range of temperatures, oxygen partial pressures and stoichiometries. Both donors (titanium interstitials and oxygen vacancies) and acceptors (titanium vacancies) are predicted to have shallow defect transition levels in the electronic-structure calculations. The resulting defect formation energies for all possible charge states are then used in thermodynamic calculations to predict the influence of temperature and oxygen partial pressure on the relative stabilities of the point defects. Their ordering is found to be the same as temperature increases and oxygen partial pressure decreases: titanium vacancy → oxygen vacancy → titanium interstitial. The charges on these defects, however, are quite sensitive to the Fermi level. Finally, the combined formation energies of point defect complexes, including Schottky, Frenkel and anti-Frenkel defects, are predicted to limit the further formation of point defects.
Keywords
Point defects , Binary oxides , thermodynamics , Density functional theory
Journal title
ACTA Materialia
Serial Year
2007
Journal title
ACTA Materialia
Record number
1143118
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