The electronic structure and properties of PuO2 and Pu2O3 have been studied from first principles by the all-electron projector-augmented-wave (PAW) method. The local density approximation (LDA)+U and the generalized gradient approximation (GGA)+U formalism have been used to account for the strong on-site Coulomb repulsion among the localized Pu 5f electrons. We discuss how the properties of PuO2 and Pu2O3 are affected by the choice of U as well as the choice of exchange-correlation potential. Also, oxidation reaction of Pu2O3, leading to formation of PuO2, and its dependence on U and exchange-correlation potential have been studied. Our results show that by choosing an appropriate U it is promising to correctly and consistently describe structural, electronic, and thermodynamic properties of PuO2 and Pu2O3, which enables it possible the modeling of redox process involving Pu-based materials.
@article{arxiv.0712.3623,
title = {First-principles LDA+U and GGA+U study of plutonium oxides},
author = {Bo Sun and Ping Zhang and Xian-Geng Zhao},
journal= {arXiv preprint arXiv:0712.3623},
year = {2007}
}