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首页> 外文期刊>The European Physical Journal B - Condensed Matter and Complex Systems >An ab initio study of PuO2±0.25, UO2±0.25, and U0.5Pu0.5O2±0.25
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An ab initio study of PuO2±0.25, UO2±0.25, and U0.5Pu0.5O2±0.25

机译:从头开始研究PuO 2±0.25 ,UO 2±0.25 和U 0.5 Pu 0.5 O < sub> 2±0.25

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摘要

Hybrid density functional theory has been used to systematically study the electronic, geometric, and magnetic properties of strongly correlated materials PuO2±x , UO2±x , and U0.5Pu0.5O2±x with x = 0.25. The calculations have been performed using the all-electron full- potential linearized augmented plane wave plus local orbitals basis (FP-L/APW+lo) method. Each compound has been studied at the ferromagnetic (FM) and anti-ferromagnetic (AFM) configurations with and without spin-orbit coupling (SOC) and full geometry optimizations. The optimized lattice constants, bulk moduli, and band gaps are reported. Total energy calculations indicate that the ground states are AFM for all compounds studied here and the band gaps are typically higher than 1.0 eV, characteristic of semiconductors. The total energy is lowered significantly and the band gaps increase with the inclusion of SOC. The chemical bonds between the actinide metals and oxygen atoms are primarily ionic in character.
机译:混合密度泛函理论已被用来系统地研究强相关材料PuO 2±x ,UO 2±x 和U 0.5 Pu 0.5 O 2±x ,x = 0.25。使用全电子全势线性化增强平面波加局部轨道基(FP-L / APW + lo)方法进行了计算。在具有和不具有自旋轨道耦合(SOC)和完整几何优化的情况下,已经对每种化合物在铁磁(FM)和反铁磁(AFM)配置下进行了研究。报告了优化的晶格常数,体模和带隙。总能量计算表明,此处研究的所有化合物的基态均为AFM,带隙通常高于1.0 eV,这是半导体的特性。随着SOC的加入,总能量显着降低,带隙增大。 act系金属和氧原子之间的化学键主要是离子性的。

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