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Interfacial free energy of the NaCl crystal-melt interface from capillary wave fluctuations

机译:毛细波波动引起的NaCl晶体与熔体界面的界面自由能

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In this work we study, by means of molecular dynamics simulations, the solid-liquid interface of NaCl under coexistence conditions. By analysing capillary waves, we obtain the stiffness for different orientations of the solid and calculate the interfacial free energy by expanding the dependency of the interfacial free energy with the solid orientation in terms of cubic harmonics. We obtain an average value for the solid-fluid interfacial free energy of 89 +/- 6 mN m(-1) that is consistent with previous results based on the measure of nucleation free energy barriers [Valeriani et al., J. Chem. Phys. 122, 194501 (2005)]. We analyse the influence of the simulation setup on interfacial properties and find that facets prepared as an elongated rectangular stripe give the same results as those prepared as squares for all cases but the 111 face. For some crystal orientations, we observe at small wave-vectors a behaviour not consistent with capillary wave theory and show that this behavior does not depend on the simulation setup. (C) 2015 AIP Publishing LLC.
机译:在这项工作中,我们通过分子动力学模拟研究了共存条件下NaCl的固液界面。通过分析毛细波,我们获得了固体不同方向的刚度,并通过扩展三次谐波中界面自由能与固体方向的依存关系来计算界面自由能。根据成核自由能垒的测量结果,我们获得了固液界面自由能的平均值89 +/- 6 mN m(-1),与先前的结果一致[Valeriani等,J。Chem。物理122,194501(2005)]。我们分析了模拟设置对界面特性的影响,发现除了111面以外,所有其他情况下,准备为细长矩形条纹的刻面与准备为正方形的刻面具有相同的结果。对于某些晶体取向,我们在小波矢处观察到与毛细管波理论不一致的行为,并表明该行为不依赖于仿真设置。 (C)2015 AIP Publishing LLC。

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