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聚合物液滴在可变形表面上的静态力学。

Statics of polymer droplets on deformable surfaces.

机构信息

Institut für Theoretische Physik, Georg-August-Universität, Friedrich-Hund-Platz 1, 37077 Göttingen, Germany.

出版信息

J Chem Phys. 2011 Dec 7;135(21):214703. doi: 10.1063/1.3663381.

Abstract

The equilibrium properties of polymer droplets on a soft deformable surface are investigated by molecular dynamics simulations of a bead-spring model. The surface consists of a polymer brush with irreversibly end-tethered linear homopolymer chains onto a flat solid substrate. We tune the softness of the surface by varying the grafting density. Droplets are comprised of bead-spring polymers of various chain lengths. First, both systems, brush and polymer liquid, are studied independently in order to determine their static and dynamic properties. In particular, using a numerical implementation of an AFM experiment, we measure the shear modulus of the brush surface and compare the results to theoretical predictions. Then, we study the wetting behavior of polymer droplets with different surface/drop compatibility and on substrates that differ in softness. Density profiles reveal, under certain conditions, the formation of a wetting ridge beneath the three-phase contact line. Cap-shaped droplets and cylindrical droplets are also compared to estimate the effect of the line tension with respect to the droplet size. Finally, the results of the simulations are compared to a phenomenological free-energy calculation that accounts for the surface tensions and the compliance of the soft substrate. Depending on the surface/drop compatibility, surface softness, and drop size, a transition between two regimes is observed: from one where the drop surface energy balances the adhesion with the surface, which is the classical Young-Dupré wetting regime, to another one where a coupling occurs between adhesion, droplet and surface elastic energies.

摘要

通过分子动力学模拟珠-簧模型研究了聚合物液滴在柔软可变形表面上的平衡特性。表面由聚合物刷组成,聚合物刷上的线性均聚物链不可逆地端接在平坦的固体基底上。我们通过改变接枝密度来调节表面的柔软度。液滴由具有不同链长的珠-簧聚合物组成。首先,分别研究了刷和聚合物液体这两个系统,以确定它们的静态和动态特性。特别是,我们使用 AFM 实验的数值实现方法,测量了刷表面的剪切模量,并将结果与理论预测进行了比较。然后,我们研究了具有不同表面/液滴相容性的聚合物液滴在柔软度不同的基底上的润湿行为。密度分布表明,在某些条件下,三相接触线下方会形成一个润湿脊。还比较了帽状液滴和圆柱形液滴,以估计线张力对液滴尺寸的影响。最后,将模拟结果与考虑表面张力和柔软基底顺应性的唯象自由能计算进行了比较。根据表面/液滴相容性、表面柔软度和液滴大小,观察到两种状态之间的转变:一种是液滴表面能与表面的附着力平衡,这是经典的杨氏-杜普雷润湿状态,另一种是附着力、液滴和表面弹性能之间发生耦合的状态。

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