Relativistic density functional theory modeling of plutonium and americium higher oxide molecules

The results of electronic structure modeling of plutonium and americium higher oxide molecules (actinide oxidation states VI through VIII) by two-component relativistic density functional theory are presented. Ground-state equilibrium molecular structures, main features of charge distributions, and...

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Veröffentlicht in:The Journal of chemical physics 2013-07, Vol.139 (3), p.034307-034307
Hauptverfasser: Zaitsevskii, Andréi, Mosyagin, Nikolai S, Titov, Anatoly V, Kiselev, Yuri M
Format: Artikel
Sprache:eng
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Zusammenfassung:The results of electronic structure modeling of plutonium and americium higher oxide molecules (actinide oxidation states VI through VIII) by two-component relativistic density functional theory are presented. Ground-state equilibrium molecular structures, main features of charge distributions, and energetics of AnO3, AnO4, An2On (An=Pu, Am), and PuAmOn, n = 6-8, are determined. In all cases, molecular geometries of americium and mixed plutonium-americium oxides are similar to those of the corresponding plutonium compounds, though chemical bonding in americium oxides is markedly weaker. Relatively high stability of the mixed heptoxide PuAmO7 is noticed; the Pu(VIII) and especially Am(VIII) oxides are expected to be unstable.
ISSN:0021-9606
1089-7690
DOI:10.1063/1.4813284