Interplay of defect cluster and the stability of xenon in uranium dioxide from density functional calculations

Hua Y. Geng, Ying Chen, Yasunori Kaneta, Motoyasu Kinoshita, and Q. Wu
Phys. Rev. B 82, 094106 – Published 14 September 2010

Abstract

Self-defect clusters in bulk matrix might affect the thermodynamic behavior of fission gases in nuclear fuel such as uranium dioxide. With first-principles local spin-density approximation plus U calculations and taking xenon as a prototype, we find that the influence of oxygen defect clusters on the thermodynamics of gas atoms is prominent, which increases the solution energy of xenon by a magnitude of 0.5 eV, about 43% of the energy difference between the two lowest lying states at 700 K. Calculation also reveals a thermodynamic competition between the uranium vacancy and trivacancy sites to incorporate xenon in hyperstoichiometric regime at high temperatures. The results show that in hypostoichiometric regime neutral trivacancy sites are the most favored position for diluted xenon gas, whereas in hyperstoichiometric condition they prefer to uranium vacancies even after taking oxygen self-defect clusters into account at low temperatures, which not only confirms previous studies but also extends the conclusion to more realistic fuel operating conditions. The observation that gas atoms are ionized to a charge state of Xe+ when at a uranium vacancy site due to strong Madelung potential implies that one can control temperature to tune the preferred site of gas atoms and then the bubble growth rate. A solution to the notorious metastable states difficulty that frequently encountered in density functional theory plus U applications, namely, the quasiannealing procedure, is also discussed.

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  • Received 21 March 2010

DOI:https://doi.org/10.1103/PhysRevB.82.094106

©2010 American Physical Society

Authors & Affiliations

Hua Y. Geng1, Ying Chen2, Yasunori Kaneta2, Motoyasu Kinoshita3,4, and Q. Wu1

  • 1National Key Laboratory of Shock Wave and Detonation Physics, Institute of Fluid Physics, CAEP, P.O. Box 919-102, Mianyang, Sichuan 621900, People’s Republic of China
  • 2Department of Systems Innovation, The University of Tokyo, Hongo 7-3-1, Tokyo 113-8656, Japan
  • 3Nuclear Technology Research Laboratory, Central Research Institute of Electric Power Industry, Tokyo 201-8511, Japan
  • 4Japan Atomic Energy Agency, Ibaraki 319-1195, Japan

Comments & Replies

Comment on “Interplay of defect cluster and the stability of xenon in uranium dioxide from density functional calculations”

Boris Dorado, Bernard Amadon, Gérald Jomard, Michel Freyss, and Marjorie Bertolus
Phys. Rev. B 84, 096101 (2011)

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Vol. 82, Iss. 9 — 1 September 2010

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