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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Thermodynamics and Intrinsic Structure of the Al-Pb Liquid-Liquid Interface: A Molecular Dynamics Simulation Study
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Thermodynamics and Intrinsic Structure of the Al-Pb Liquid-Liquid Interface: A Molecular Dynamics Simulation Study

机译:Al-Pb液-液界面的热力学和本征结构:分子动力学模拟研究

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摘要

We examine the thermodynamics and intrinsic structure of the Al—Pb liquid—liquid interface using molecular dynamics simulation and embedded atom method potentials. The instantaneous interfacial positions, from which the intrinsic structure and the capillary fluctuation spectrum are determined, are calculated using a grid-based method. The interfacial free energy extracted from the capillary fluctuation spectrum is shown to be in excellent agreement with that calculated mechanically by integrating the stress profile. The intrinsic liquid—liquid interfacial density profile shows structural oscillations in the liquid phases in the interfacial region that are shown to be quantitatively similar to the radial distribution functions of the bulk liquid, consistent with theoretical predictions from classical density functional theory and with earlier simulations on liquid-liquid and liquid—vapor interfaces. In addition, we show the mean interfacial density profile for this system is well described as a convolution of the intrinsic density profile and the probability distribution of interfacial position.
机译:我们使用分子动力学模拟和嵌入式原子方法势研究了Al-Pb液-液界面的热力学和内在结构。使用基于网格的方法计算瞬时界面位置,从而确定其固有结构和毛细管波动谱。从毛细管波动谱中提取的界面自由能与通过积分应力分布图机械计算的自由能非常一致。固有的液体-液体界面密度分布图显示界面区域内液相的结构振荡,从数量上看与散装液体的径向分布函数相似,这与经典密度泛函理论的理论预测和早期的模拟相一致。液-液和液-气界面。另外,我们显示了该系统的平均界面密度分布图,可以很好地描述为固有密度分布图和界面位置的概率分布的卷积。

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