Title of article
Investigation of oxygen point defects in cubic ZrO2 by density functional theory
Author/Authors
Liu، نويسنده , , Bin and Xiao، نويسنده , , Haiyan and Zhang، نويسنده , , Yanwen and Aidhy، نويسنده , , Dilpuneet S. and Weber، نويسنده , , William J.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
6
From page
22
To page
27
Abstract
The energetics of formation and migration of the oxygen vacancy and interstitial in cubic ZrO2 are investigated by density functional theory calculations. In an O-rich environment, the negatively charged oxygen interstitial is the most dominant defect whereas, the positively charged oxygen vacancy is the most dominant defect under O-poor conditions. Oxygen interstitial migration occurs by the interstitialcy and the direct interstitial mechanisms, with calculated migration energy barriers of 2.94 eV and 2.15 eV, respectively. For the oxygen vacancy, diffusion is preferred along the 〈1 0 0〉 direction, and the calculated energy barriers are 0.26 eV for V O 2 + , 0.27 eV for V O 1 + and 0.54 eV for V O 0 . These results indicate that oxygen diffusivity is higher through the vacancy-migration mechanism.
Keywords
nuclear materials , Cubic ZrO2 , Point Defects , formation , diffusion
Journal title
Computational Materials Science
Serial Year
2014
Journal title
Computational Materials Science
Record number
1693000
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