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Surface tension and long range corrections of cylindrical interfaces

机译:圆柱界面的表面张力和远距离校正

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The calculation of the surface tension of curved interfaces has been deeply investigated from molecular simulation during this last past decade. Recently, the thermodynamic Test-Area (TA) approach has been extended to the calculation of surface tension of curved interfaces. In the case of the cylindrical vapour-liquid interfaces of water and Lennard-Jones fluids, it was shown that the surface tension was independent of the curvature of the interface. In addition, the surface tension of the cylindrical interface is higher than that of the planar interface. Molecular simulations of cylindrical interfaces have been so far performed (i) by using a shifted potential, (ii) by means of large cutoff without periodic boundary conditions, or (iii) by ignoring the long range corrections to the surface tension due to the difficulty to estimate them. Indeed, unlike the planar interfaces there are no available operational expressions to consider the tail corrections to the surface tension of cylindrical interfaces. We propose here to develop the long range corrections of the surface tension for cylindrical interfaces by using the non-exponential TA (TA2) method. We also extend the formulation of the Mecke-Winkelmann corrections initially developed for planar surfaces to cylindrical interfaces. We complete this study by the calculation of the surface tension of cylindrical surfaces of liquid tin and copper using the embedded atom model potentials. (C) 2015 AIP Publishing LLC.
机译:最近十年来,通过分子模拟对弯曲界面的表面张力进行了深入研究。最近,热力学试验区(TA)方法已扩展到弯曲界面的表面张力的计算。在水和Lennard-Jones流体的圆柱状汽-液界面的情况下,表明表面张力与界面的曲率无关。另外,圆柱形界面的表面张力高于平面界面的表面张力。到目前为止,已经进行了圆柱界面的分子模拟(i)通过使用移动的电位,(ii)通过没有周期性边界条件的大截止值,或(iii)由于困难而忽略了对表面张力的长距离校正估计他们。实际上,与平面界面不同,没有可用的运算表达式来考虑对圆柱界面的表面张力进行尾部校正。我们在这里建议通过使用非指数TA(TA2)方法来开发圆柱界面的表面张力的远距离校正。我们还将最初为平面开发的Mecke-Winkelmann校正的公式扩展到圆柱界面。我们通过使用嵌入的原子模型电势计算液态锡和铜的圆柱表面的表面张力来完成这项研究。 (C)2015 AIP Publishing LLC。

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