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硬软表面间的分子输运和流动:模型系统的计算机模拟。

Molecular transport and flow past hard and soft surfaces: computer simulation of model systems.

机构信息

Institut für Theoretische Physik, Georg-August-Universität, 37077 Göttingen, Germany.

出版信息

J Phys Condens Matter. 2011 May 11;23(18):184105. doi: 10.1088/0953-8984/23/18/184105. Epub 2011 Apr 20.

Abstract

The equilibrium and flow of polymer films and drops past a surface are characterized by the interface and surface tensions, viscosity, slip length and hydrodynamic boundary position. These parameters of the continuum description are extracted from molecular simulations of coarse-grained models. Hard, corrugated substrates are modelled by a Lennard-Jones solid while polymer brushes are studied as prototypes of soft, deformable surfaces. Four observations are discussed. (i) If the surface becomes strongly attractive or is coated with a brush, the Navier boundary condition fails to describe the effect of the surface independently of the strength and type of the flow. This failure stems from the formation of a boundary layer with an effective, higher viscosity. (ii) In the case of brush-coated surfaces, flow induces a cyclic, tumbling motion of the tethered chain molecules. Their collective motion gives rise to an inversion of the flow in the vicinity of the grafting surfaces and leads to strong, non-Gaussian fluctuations of the molecular orientations. The flow past a polymer brush cannot be described by Brinkman's equation. (iii) The hydrodynamic boundary condition is an important parameter for predicting the motion of polymer droplets on a surface under the influence of an external force. Their steady-state velocity is dictated by a balance between the power that is provided by the external force and the dissipation. If there is slippage at the liquid-solid interface, the friction at the solid-liquid interface and the viscous dissipation of the flow inside the drop will be the dominant dissipation mechanisms; dissipation at the three-phase contact line appears to be less important on a hard surface. (iv) On a soft, deformable substrate like a polymer brush, we observe a lifting-up of the three-phase contact line. Controlling the grafting density and the incompatibility between the brush and the polymer liquid we can independently tune the softness of the surface and the contact angle and thereby identify the parameters for maximizing the deformation at the three-phase contact.

摘要

聚合物薄膜和液滴在表面附近的平衡和流动特性由界面张力和表面张力、粘度、滑移长度和流体动力学边界位置来描述。这些连续体描述的参数是从粗粒模型的分子模拟中提取出来的。硬的、波纹状的衬底由 Lennard-Jones 固体来建模,而聚合物刷则被研究为软的、可变形表面的原型。讨论了四个观察结果。(i) 如果表面变得很强的吸引力或被刷涂,纳维边界条件不能独立于流动的强度和类型来描述表面的影响。这种失效源于边界层的形成,边界层具有有效的更高的粘度。(ii) 在刷涂表面的情况下,流动会导致链分子的循环、翻滚运动。它们的集体运动导致在接枝表面附近的流动反转,并导致分子取向的强烈、非高斯波动。聚合物刷的流动不能用 Brinkman 方程来描述。(iii) 流体动力学边界条件是预测聚合物液滴在表面上的运动的一个重要参数,因为它受到外力的影响。它们的稳态速度是由外部力提供的功率与耗散之间的平衡决定的。如果在液固界面存在滑移,那么在固液界面的摩擦力和液滴内的流动的粘性耗散将是主要的耗散机制;在硬表面上,三相接触线处的耗散似乎不太重要。(iv) 在像聚合物刷这样的软的、可变形的衬底上,我们观察到三相接触线的抬起。通过控制接枝密度和刷与聚合物液体之间的不相容性,我们可以独立地调节表面的柔软度和接触角,从而确定在三相接触处最大化变形的参数。

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