Imaizumi Yuta, Omori Takeshi, Kusudo Hiroki, Bistafa Carlos, Yamaguchi Yasutaka
Department of Mechanical Engineering, Osaka University, 2-1 Yamadaoka, Suita 565-0871, Japan.
J Chem Phys. 2020 Jul 21;153(3):034701. doi: 10.1063/5.0011979.
We have given theoretical expressions for the forces exerted on a so-called Wilhelmy plate, which we modeled as a quasi-2D flat and smooth solid plate immersed in a liquid pool of a simple liquid. All forces given by the theory, the local forces on the top, the contact line, and the bottom of the plate as well as the total force, showed an excellent agreement with the MD simulation results. The force expressions were derived by a purely mechanical approach, which is exact and ensures the force balance on the control volumes arbitrarily set in the system, and are valid as long as the solid-liquid (SL) and solid-vapor (SV) interactions can be described by mean-fields. In addition, we revealed that the local forces around the bottom and top of the solid plate can be related to the SL and SV interfacial tensions γ and γ, and this was verified through the comparison with the SL and SV works of adhesion obtained by the thermodynamic integration (TI). From these results, it has been confirmed that γ and γ as well as the liquid-vapor interfacial tension γ can be extracted from a single equilibrium MD simulation without the computationally demanding calculation of the local stress distributions and the TI.
我们给出了作用在所谓的威廉姆板上的力的理论表达式,我们将其建模为浸入简单液体的液池中的准二维平坦光滑固体板。该理论给出的所有力,即板顶部、接触线和底部的局部力以及总力,与分子动力学(MD)模拟结果显示出极好的一致性。力的表达式是通过一种纯机械方法推导出来的,这种方法是精确的,并确保了在系统中任意设定的控制体积上的力平衡,并且只要固液(SL)和固气(SV)相互作用可以用平均场来描述,这些表达式就是有效的。此外,我们发现固体板底部和顶部周围的局部力可以与SL和SV界面张力γ和γ相关,并且通过与通过热力学积分(TI)获得的SL和SV粘附功进行比较得到了验证。从这些结果可以确认,γ和γ以及液气界面张力γ可以从单个平衡MD模拟中提取出来,而无需对局部应力分布和TI进行计算量很大的计算。