DOE OSTI · 3374904
Charged Defects in UO 2 Bulk and Surface: A First-Principles Study
Abstract
Uranium dioxide (UO 2 ) is the primary fuel used in nuclear reactors. Under the extreme heat and radiation inside a reactor, this material inevitably develops defects in its crystal structure. To investigate the nature and behavior of these defects, DFT+U calculations were employed to investigate charged point defects in both bulk UO 2 and its most stable surface, the (111) plane. The formation of defects and their impact on the electronic structure were systematically examined. The results reveal that these defects introduce localized electronic states, alter magnetic behavior, and modify the structural properties. In general, such defects act as deep traps capable of capturing and retaining charge carriers. The stability of these defects depends strongly on the chemical environment and the position of the Fermi level. Surface defect calculations reveal that oxygen vacancies form more readily at the surface than in the bulk over a wide range of electron chemical potential, with subsurface oxygen vacancies being more stable than those in the top layer. Overall, the findings demonstrate how charged defects influence magnetism, transport, and stability in UO 2 , providing insights that may guide improvements in the safety and efficiency of nuclear fuel.
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Aryal, Sandip [Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)] (ORCID:0000000172852198), Wang, Gaoxue [Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)] (ORCID:0000000348127257), Batista, Enrique Ricardo [Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)] (ORCID:0000000230744022), Yang, Ping [Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)] (ORCID:0000000347262860). 2026-04-29. Charged Defects in UO 2 Bulk and Surface: A First-Principles Study. https://doi.org/10.1021/acsami.6c01154
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