Defect segregation facilitates oxygen transport at fluorite UO 2 grain boundaries

Author:

Symington A. R.1ORCID,Molinari M.2ORCID,Brincat N. A.3,Williams N. R.3,Parker S. C.1

Affiliation:

1. Department of Chemistry, University of Bath, Claverton Down, Bath BA2 7AY, UK

2. Department of Chemistry, University of Huddersfield, Queensgate, Huddersfield HD1 3DH, UK

3. AWE plc, Aldermaston, Reading, Berkshire RG7 4PR, UK

Abstract

An important challenge for modelling transport in materials for energy applications is that in most applications they are polycrystalline, and hence it is critical to understand the properties in the presence of grain boundaries. Moreover, most grain boundaries are not pristine stoichiometric interfaces and hence dopants are likely to play a significant role. In this paper, we describe our recent work on using atomistic molecular dynamics simulations to model the effect of doped grain boundaries on oxygen transport of fluorite structured UO 2 . UO 2 , much like other fluorite grain boundaries, are found to be sinks for oxygen vacancy segregation relative to the grain interior, thus facilitating oxygen transport. Fission products further enhance diffusivity via strong interactions between the impurities and oxygen defects. Doping produces a striking structural alteration in the Σ 5 class of grain boundaries that enhances oxygen diffusivity even further. This article is part of a discussion meeting issue ‘Energy materials for a low carbon future’.

Funder

EPSRC

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference76 articles.

1. Aaron K. 2018 Global power plant database. Global Energy Observatory Google KTH Royal Institute of Technology in Stockholm Enipedia World Resources Institute . (http://datasets.wri.org/dataset/globalpowerplantdatabase)

2. Energy transitions and national development indicators: A global review of nuclear energy production

3. Materials challenges for advanced nuclear energy systems;Guerin Y;MRS Bull.,2009

4. Density functional theory calculations of defective UO2 at U3O7 stoichiometry

5. Density functional theory investigation of the layered uranium oxides U3O8 and U2O5

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