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Trapping of He in intrinsic defects in zirconolite

Version 2 2024-03-12, 13:30
Version 1 2024-03-01, 09:12
journal contribution
posted on 2024-03-12, 13:30 authored by Jack Mulroue, Matthew WatkinsMatthew Watkins, Andrew J. Morris, Dorothy M. Duffy
<p>Zirconolite (CaZrTi2O7) is a proposed ceramic for the disposal of plutonium. Density functional theory with the dispersion correction (DFT-D3) has been used to study the behaviour of the He defect in zirconolite. The lowest energy He interstitial site is located in the <0 1 0> channels and found to have a migration barrier of 1.46 eV. There was a significant charge state dependence on the binding energies of a He atom to the vacancies, with the neutral 5-fold coordinated Ti having the strongest binding followed by the Ca vacancies. Multiple He interstitials were studied to examine if He bubbles were likely to form in bulk zirconolite. It was found that it was unfavourable for He to cluster at the concentrations studied. © 2013 Elsevier B.V. All rights reserved.</p>

History

School affiliated with

  • School of Mathematics and Physics (Research Outputs)

Publication Title

Journal of Nuclear Materials

Volume

437

Issue

1-3

Pages/Article Number

261-266

Publisher

Elsevier

ISSN

0022-3115

Date Submitted

2015-08-19

Date Accepted

2013-02-15

Date of First Publication

2013-02-27

Date of Final Publication

2013-06-01

Date Document First Uploaded

2015-08-19

ePrints ID

17702