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Contact Angle of Sessile Drops in Lennard-Jones Systems

机译:Lennard-Jones系统中无滴的接触角

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Molecular dynamics simulations are used for studying the contact angle of nanoscale sessile drops on a planar solid wall in a system interacting via the truncated and shifted Lennard-Jones potential. The entire range between total wetting and dewetting is investigated by varying the solid-fluid dispersive interaction energy. The temperature is varied between the triple point and the critical temperature. A correlation is obtained for the contact angle in dependence of the temperature and the dispersive interaction energy. Size effects are studied by varying the number of fluid particles at otherwise constant conditions, using up to 150 000 particles. For particle numbers below 10 000, a decrease of the contact angle is found. This is attributed to a dependence of the solid-liquid surface tension on the droplet size. A convergence to a constant contact angle is observed for larger system sizes. The influence of the wall model is studied by varying the density of the wall. The effective solid-fluid dispersive interaction energy at a contact angle of theta = 90 degrees is found to be independent of temperature and to decrease linearly with the solid density. A correlation is developed that describes the contact angle as a function of the dispersive interaction, the temperature, and the solid density. The density profile of the sessile drop and the surrounding vapor phase is described by a correlation combining a sigmoidal function and an oscillation term.
机译:分子动力学模拟用于研究通过截断的和移动的Lennard-Jones势相互作用的系统中的平面结构的固体壁上的纳米无柄液滴的接触角。通过改变固体-流体分散相互作用能来研究总润湿和反润湿之间的整个范围。温度在三点和临界温度之间变化。获得了取决于温度和分散相互作用能的接触角的相关性。通过在不固定的条件下(最多使用150000个粒子)改变流体粒子的数量来研究尺寸效应。对于低于10000的粒子数,发现接触角减小。这归因于固液表面张力对液滴尺寸的依赖性。对于较大的系统尺寸,观察到会聚到恒定的接触角。通过改变墙的密度来研究墙模型的影响。发现在接触角为θ= 90度时有效的固体-流体分散相互作用能与温度无关,并且随固体密度线性降低。建立了相关性,其将接触角描述为分散相互作用,温度和固体密度的函数。固着液滴和周围气相的密度分布通过组合S形函数和振荡项的相关性来描述。

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