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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Large-scale molecular dynamics study of liquid K-Cs alloys: Structural, thermodynamic, and diffusion properties
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Large-scale molecular dynamics study of liquid K-Cs alloys: Structural, thermodynamic, and diffusion properties

机译:液态K-Cs合金的大规模分子动力学研究:结构,热力学和扩散特性

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摘要

Molecular dynamics simulations are performed to study the evolution of the properties of K-Cs alloys with composition. Interatomic interactions are described by the second-order pseudopotential-perturbation formalism. The validity of this model is ascertained by comparison with available experimental results of total structure. Partial structures are investigated in detail in relation with interaction features. The large size of the simulated box provides an accurate description of the low-q behavior of the partial structure factors, yielding some thermodynamic properties like the isothermal compressibility. Individual and collective dynamic properties are considered through the self-diffusion and interdiffusion coefficients. An analysis of these properties indicates a cancellation between homocoordination and heterocoordination tendencies so that the system behaves nearly like an ideal mixture in the whole range of compositions despite the complex metallic interactions. We emphasize that such a behavior can be understood from a competition between size asymmetry and attraction nonadditivity on one side, and attraction asymmetry on the other side.
机译:进行分子动力学模拟以研究具有组成的K-Cs合金性能的演变。原子间相互作用由二阶伪势扰动形式主义描述。通过与整体结构的可用实验结果进行比较,可以确定该模型的有效性。详细研究了部分结构与交互功能的关系。模拟框的大尺寸提供了对部分结构因子的低q行为的准确描述,产生了一些热力学特性,如等温压缩性。通过自扩散系数和互扩散系数考虑个体和集体的动力学特性。对这些性质的分析表明,在同位配位和异位配位之间存在抵消作用,因此,尽管存在复杂的金属相互作用,该系统在整个成分范围内的表现仍接近理想混合物。我们强调,可以从一侧的尺寸不对称和吸引非可加性与另一侧的吸引不对称之间的竞争来理解这种行为。

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