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润滑刷上液滴的隐形转变

Cloaking Transition of Droplets on Lubricated Brushes.

作者信息

Badr Rodrique G M, Hauer Lukas, Vollmer Doris, Schmid Friederike

机构信息

Institut für Physik, Johannes Gutenberg-Universität Mainz, Staudingerweg 7, D-55099 Mainz, Germany.

Max Plank Institut für Polymer Forschung Mainz, Ackermannweg 10, D-55128 Mainz, Germany.

出版信息

J Phys Chem B. 2022 Sep 15;126(36):7047-7058. doi: 10.1021/acs.jpcb.2c04640. Epub 2022 Sep 5.

Abstract

We study the equilibrium properties and the wetting behavior of a simple liquid on a polymer brush, with and without the presence of lubricant by multibody Dissipative Particle Dynamics simulations. The lubricant is modeled as a polymeric liquid consisting of short chains that are chemically identical with the brush polymers. We investigate the behavior of the brush in terms of the grafting density and the amount of lubricant present. Regarding the wetting behavior, we study a sessile droplet on top of the brush. The droplet consists of nonbonded particles that form a dense phase. Our model and choice of parameters result in the formation of a wetting ridge and in the cloaking of the droplet by the lubricant; i.e., the lubricant chains creep up onto the droplet and eventually cover its surface completely. Cloaking is a phenomenon that is observed experimentally and is of integral importance to the dynamics of sliding droplets. We quantify the cloaking in terms of its thickness, which increases with the amount of lubricant present. The analysis reveals a well-defined transition point where the cloaking sets in. We propose a thermodynamic theory to explain this behavior. In addition, we investigate the dependence of the contact angles on the size of the droplet and the possible effect of line tension. We quantify the variation of the contact angle with the curvature of the contact line on a lubricant free brush and find a negative value for the line tension. Finally we investigate the effect of cloaking/lubrication on the contact angles and the wetting ridge. We find that lubrication and cloaking reduce the contact angles by a couple of degrees. The effect on the wetting ridge is a reduction in the extension of the brush chains near the three phase contact line, an effect that was also observed in experiments of droplets on cross-linked gels.

摘要

我们通过多体耗散粒子动力学模拟研究了简单液体在聚合物刷上的平衡性质和润湿性,有无润滑剂存在的情况均进行了研究。润滑剂被建模为一种由短链组成的聚合液体,这些短链与刷状聚合物化学性质相同。我们根据接枝密度和存在的润滑剂量来研究刷的行为。关于润湿性,我们研究了刷顶部的一个 sessile 液滴。该液滴由形成致密相的非键合粒子组成。我们的模型和参数选择导致形成了一个润湿脊,并且润滑剂会包裹住液滴;也就是说,润滑剂链会爬上液滴并最终完全覆盖其表面。包裹是一种在实验中观察到的现象,对于滑动液滴的动力学至关重要。我们根据包裹的厚度对其进行量化,包裹厚度会随着存在的润滑剂量增加而增加。分析揭示了一个明确的包裹开始的转变点。我们提出了一种热力学理论来解释这种行为。此外,我们研究了接触角对液滴尺寸的依赖性以及线张力的可能影响。我们量化了在无润滑剂刷上接触角随接触线曲率的变化,并发现线张力为负值。最后,我们研究了包裹/润滑对接触角和润湿脊的影响。我们发现润滑和包裹会使接触角降低几度。对润湿脊的影响是刷链在三相接触线附近的延伸减少,这种效应在交联凝胶上液滴的实验中也观察到了。

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