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First-principles study of structural, elastic, electronic, vibrational and thermodynamic properties of uranium aluminides

机译:铀铝化结构,弹性,电子,振动和热力学性能的第一原理研究

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摘要

The structural, elastic, electronic, vibrational and thermodynamic properties of uranium aluminides UAlx (x = 2, 3, 4) were studied by density functional theory calculations. The single crystal elastic constants of UAlx were predicted using the stress-strain method, which were further used to calculate the polycrystalline aggregate properties of UAlx, including bulk modulus, shear modulus, Young's modulus, and Poisson's ratio, etc. The calculated electronic density of states confirm that UAlx compounds are metallic phases with majority states at the Fermi level contributed by U 5f electrons. The phonon dispersion relations and density of states show that the low frequency acoustic phonon modes of UAlx are dominated by the lattice vibration of uranium atoms while high frequency optical phonon modes are from the vibration of aluminum atoms. Using quasiharmonic approximation, thermodynamic properties of UAlx, including Gibbs free energy, entropy, heat capacity, and linear thermal expansion coefficient, were predicted by including both lattice vibrational and thermal electronic contributions. The thermal electronic energy was found to be crucial for the description of the temperature dependence of the thermodynamic properties. The derived Gibbs energy functions of UAlx are expected to be useful to the thermodynamic modeling of the ternary U-Mo-Al system.
机译:通过密度泛函理论计算研究了铀铝铝化物(X = 2,3,4)的结构,弹性,电子,振动和热力学性质。使用压力 - 应变法预测UALX的单晶弹性常数,该菌株进一步用于计算UALX的多晶聚集性,包括散装模量,剪切模量,杨氏模量和泊松比等。计算的电子密度各国证实,UALX化合物是具有由U 5F电子的费米水平的多数态的金属相。声子分散关系和各种密度表明UALX的低频声学声子模式由铀原子的晶格振动主导,而高频光学声音模式来自铝原子的振动。通过包括晶格振动和热电子贡献,预测了UALX的热力学性能,包括GIBBS自由能,熵,热容量和线性热膨胀系数。发现热电子能量对于热力学性质的温度依赖性的描述至关重要。预计UALX的衍生的GIBBS能量函数对于三元U-MO-AL系统的热力学建模是有用的。

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