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首页> 外文期刊>The Journal of Chemical Physics >Insight into electric field-induced rupture mechanism of water-in-toluene emulsion films from a model system
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Insight into electric field-induced rupture mechanism of water-in-toluene emulsion films from a model system

机译:从模型系统中洞察电场诱导的水甲苯乳液膜的破裂机制

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This paper presents a model, which we have designed to get insight into the development of electroinduced instability of a thin toluene emulsion film in contact with the saline aqueous phase. Molecular dynamics (MD) simulations demonstrate the role of charge accumulation in the toluene-film rupture induced by a DC electric field. Two ensembles-NVT and NPT-are used to determine the critical value of the external field at which the film ruptures, the charge distribution and capacitance of the thin film, number densities, and the film structure. The rupture mechanism as seen from this model is the following: in both NVT and NPT ensembles, condenser plates, where the charge density is maximal, are situated at the very border between the bulk aqueous (water) phase and the mixed layer. No ion penetration is observed within the toluene core, thus leaving all the distribution of charges within the mixed zone and the bulk phase that could be attributed to the formation of hydration shells. When the critical electric field is reached within a certain time after the field application, electric discharge occurs indicating the beginning of the rupturing process. The MD simulations indicate that the NPT ensemble predicts a value of the critical field that is closer to the experimental finding. Published by AIP Publishing.
机译:本文提出了一种模型,我们已经设计为深入了解与所述盐水的水相接触的薄甲苯乳胶膜的electroinduced不稳定的发展。分子动力学(MD)模拟演示的电荷累积在由DC电场感应出的甲苯破膜的作用。两个合奏-NVT和NPT-用于确定外场的临界值在所述膜破裂,薄膜,数密度,且膜的结构的电荷分布和电容。从这个模型中看到的破裂机理是以下情况:在两个NVT和NPT系综,电容器板,其中所述电荷密度为最大,分设在大量水(水)相和混合层之间的边界很。没有离子渗透甲苯芯内观察到的,从而使所有的电荷的混合区中的分布,并且可以归因于水合外层的形成体相。当在现场应用后在一定时间内达到临界电场,放电发生指示破裂过程的开始。在MD模拟表明,NPT系综预测是更接近实验发现临界字段的值。通过AIP发布发布。

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