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利用温度梯度模拟水纳米液滴的润湿性变化。

Mimicking wettability alterations using temperature gradients for water nanodroplets.

机构信息

Department of Mechanical Engineering, Indian Institute of Technology Ropar, Rupanagar 140001, India.

出版信息

Nanoscale. 2017 Aug 31;9(34):12509-12515. doi: 10.1039/c7nr03320f.

Abstract

A sessile droplet or a film usually moves from hotter regions to colder regions, due to variations in interfacial tension. This, known as the so-called Marangoni effect, is true for most pure liquids like water for which the surface tension decreases with an increase in temperature. In stark contrast to this existing understanding, we bring forth the coupled effect of wettability and temperature gradients on the dynamics of the three-phase contact line. By simultaneously tracking the dynamic evolution of the three-phase contact line due to the evaporation and diffusion of molecules through molecular dynamics simulations, we explore the coterminous effects of the change of surface tension coefficients and wetting parameters with temperature on sessile droplets residing on surfaces with different wettabilities. We demonstrate, for the very first time, that the inverse Marangoni effect, which is believed to be exclusively observed in mixtures and self-rewetting fluids, is feasible in pure water at scales where inertial effects are negligible. The results of the study find application in electronic chip cooling where by the combined tuning of surface characteristics and Marangoni forces, droplets can be passively transported to warmer regions for efficient thermal management.

摘要

由于界面张力的变化,无定形液滴或薄膜通常会从较热的区域移动到较冷的区域。这就是所谓的 Marangoni 效应,对于大多数像水这样的纯液体来说都是如此,因为随着温度的升高,表面张力会降低。与这种现有认识形成鲜明对比的是,我们提出了润湿性和温度梯度对三相接触线动力学的耦合效应。通过同时跟踪分子通过分子动力学模拟蒸发和扩散引起的三相接触线的动态演化,我们探索了表面张力系数和润湿参数随温度变化对不同润湿性表面上的无定形液滴的共时效应。我们首次证明,在惯性效应可以忽略的尺度上,在纯水中也可以实现反马兰戈尼效应,而这种效应被认为仅在混合物和自润湿流体中观察到。该研究的结果在电子芯片冷却中有应用,通过表面特性和马兰戈尼力的联合调节,液滴可以被动地输送到较热的区域,以实现有效的热管理。

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