Xenon–metal pair formation in UO2 investigated using DFT + <i>U</i>
Abstract
A recent experimental study on a spent uranium dioxide (UO2) fuel sample from Belgium Reactor 3 identified a unique pair structure formed by the noble metal phase (NMP) and fission gas [xenon (Xe)] precipitate. However, the fundamental mechanism behind this structure remains unclear. The present study aims to provide an understanding of the interaction between five different metal precipitates [molybdenum (Mo), ruthenium (Ru), palladium (Pd), technetium (Tc), and rhodium (Rh)] and the Xe fission gas atoms in UO2, by using density functional theory (DFT) in combination with the Hubbard U correction to compute the formation energies involved. All DFT + U calculations were performed with occupation matrix control to ensure antiferromagnetic ordering of UO2. The calculated formation and binding energies of the Xe and solid fission products in the NMP reveal that these metal precipitates form stable pair structures with Xe. Notably, the formation energy of Xe–metal pairs is lower than that of the isolated single defects in all instances, with Pd and Mo showing the most favorable binding energy, likely accounting for the observed pair structure formation.
Article Details
Journal Info
Journal of Applied Physics
American Institute of Physics
Authors (8)
Linu Malakkal
Computational Mechanics and Materials Department
Shuxiang Zhou
Himani Mishra
School of Applied & Engineering Physics
Mukesh Bachhav
3 Materials and Fuels Complex, Idaho National Laboratory
Jia Hong Ke
Idaho National Laboratory 1 , Idaho Falls, Idaho 83415,
Chao Jiang
School of Chemistry and Chemical Engineering and State Key Laboratory of Synergistic Chem-Bio Synthesis
Lingfeng He
Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, College of Horticulture, China Agricultural University
Sudipta Biswas