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三硅氧烷表面活性剂对铺展液滴中接触线的平滑作用及其与超铺展的相关性。

Smoothing of contact lines in spreading droplets by trisiloxane surfactants and its relevance for superspreading.

作者信息

Isele-Holder Rolf E, Berkels Benjamin, Ismail Ahmed E

机构信息

Aachener Verfahrenstechnik, Molecular Simulations and Transformations, RWTH Aachen University, Schinkelstraße 2, 52062 Aachen, Germany.

出版信息

Soft Matter. 2015 Jun 14;11(22):4527-39. doi: 10.1039/c4sm02298j.

Abstract

Superspreading, the greatly enhanced spreading of aqueous solutions of trisiloxane surfactants on hydrophobic substrates, is of great interest in fundamental physics and technical applications. Despite numerous studies in the last 20 years, the superspreading mechanism is still not well understood, largely because the molecular scale cannot be resolved appropriately either experimentally or using continuum simulations. The absence of molecular-scale knowledge has led to a series of conflicting hypotheses based on different assumptions of surfactant behavior. We report a series of large-scale molecular dynamics simulations of aqueous solutions of superspreading and non-superspreading surfactants on different substrates. We find that the transition from the liquid-vapor to the solid-liquid interface is smooth for superspreading conditions, allowing direct adsorption through the contact line. This finding complements a study [Karapetsas et al., J. Fluid Mech., 2011, 670, 5-37], which predicts that superspreading can occur if this adsorption path is possible. Based on the observed mechanism, we provide plausible explanations for the influence of the substrate hydrophobicity, the surfactant chain length, and the surfactant concentration on the superspreading phenomenon. We also briefly address that the observed droplet shape is a mechanism to overcome the Huh-Scriven paradox of infinite viscous dissipation at the contact line.

摘要

超铺展现象,即三硅氧烷表面活性剂水溶液在疏水基底上的铺展大幅增强,在基础物理学和技术应用方面备受关注。尽管在过去20年里已有众多研究,但超铺展机制仍未得到很好的理解,很大程度上是因为无论是通过实验还是使用连续介质模拟,都无法恰当地解析分子尺度。缺乏分子尺度的知识导致了基于表面活性剂行为的不同假设而产生的一系列相互矛盾的假说。我们报告了一系列关于超铺展和非超铺展表面活性剂水溶液在不同基底上的大规模分子动力学模拟。我们发现,在超铺展条件下,从液 - 气界面到固 - 液界面的转变是平滑的,允许通过接触线进行直接吸附。这一发现补充了一项研究[卡拉佩察斯等人,《流体力学杂志》,2011年,670卷,5 - 37页],该研究预测如果这种吸附路径可行,就会发生超铺展。基于观察到的机制,我们对基底疏水性、表面活性剂链长和表面活性剂浓度对超铺展现象的影响给出了合理的解释。我们还简要指出,观察到的液滴形状是一种克服接触线处无限粘性耗散的胡 - 斯克里文悖论的机制。

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