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Analysis on wetting and local dynamic properties of single water droplet on a polarized solid surface: A molecular dynamics study

机译:极化固体表面上单个水滴的润湿和局部动力学特性分析:分子动力学研究

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摘要

Molecular dynamics simulations of single water droplets on a solid surface were carried out in order to investigate the effects that the Coulomb interaction between liquid and solid molecules has on wetting behavior by appending vertical electric polarization on a solid surface. The water droplet became more wettable both on upward and downward polarized surfaces, although structures of the adsorption layer appearing near the solid surface were clearly different, and the relation between droplet contact angle and surface polarization was also different for upward and downward polarization directions. The probability density distribution of molecular orientation around the adsorption layer indicated that preferable water molecule orientations varied largely by the surface polarization, and the rotational mobility around the preferable orientations was also affected. The dynamic property due to this rotational mobility was clearly captured by means of distribution of rotational diffusion coefficient, which potentially corresponded to local viscosity distribution.
机译:为了研究液体和固体分子之间的库仑相互作用通过在固体表面附加垂直电极化来研究液体和固体分子之间的库仑相互作用对润湿行为的影响,对固体表面上的单个水滴进行了分子动力学模拟。尽管出现在固体表面附近的吸附层的结构明显不同,水滴在向上和向下极化的表面上都变得更易润湿,并且对于向上和向下极化方向,水滴的接触角与表面极化之间的关系也不同。吸附层周围分子取向的概率密度分布表明,优选的水分子取向受表面极化的影响很大,并且围绕优选取向的旋转迁移率也受到影响。借助于旋转扩散系数的分布清楚地捕获了由于这种旋转迁移率引起的动态特性,其潜在地对应于局部粘度分布。

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