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Static and dynamic properties of the interface between a polymer brush and a melt of identical chains

机译:聚合物刷和相同链的熔体之间的界面的静态和动态特性

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Molecular-dynamics simulations of a short-chain polymer melt between two brush-covered surfaces under shear have been performed. The end-grafted polymers which constitute the brush have the same chemical properties as the free chains in the melt and provide a soft deformable substrate. Polymer chains are described by a coarse-grained bead-spring model, which includes excluded volume and backbone connectivity of the chains. The grafting density of the brush layer offers a way of controlling the behavior of the surface without altering the molecular interactions. We perform equilibrium and nonequilibrium molecular-dynamics simulations at constant temperature and volume using the dissipative particle dynamics thermostat. The equilibrium density profiles and the behavior under shear are studied as well as the interdigitation of the melt into the brush, the orientation on different length scales (bond vectors, radius of gyration, and end-to-end vector) of free and grafted chains, and velocity profiles. The obtained boundary conditions and slip length show a rich behavior as a function of grafting density and shear velocity. (c) 2006 American Institute of Physics.
机译:在剪切作用下,两个刷子覆盖的表面之间的短链聚合物熔体进行了分子动力学模拟。构成刷子的末端接枝聚合物与熔体中的自由链具有相同的化学性质,并提供柔软的可变形基材。聚合物链由粗粒珠弹簧模型描述,该模型包括链的排除体积和主链连接性。刷子层的接枝密度提供了一种在不改变分子相互作用的情况下控制表面行为的方式。我们使用耗散的粒子动力学恒温器,在恒定温度和体积下执行平衡和非平衡分子动力学模拟。研究了平衡密度分布和在剪切下的行为,以及熔体进入刷子的叉指,游离链和接枝链在不同长度尺度(粘结矢量,回转半径和端到端矢量)上的取向。和速度配置文件。所获得的边界条件和滑移长度表现出丰富的行为,这些行为是接枝密度和剪切速度的函数。 (c)2006年美国物理研究所。

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