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Electrohydrodynamics in nanochannels coated by mixed polymer brushes: effects of electric field strength and solvent quality

机译:混合聚合物刷涂覆的纳米通道中的电力流体动力学:电场强度和溶剂质量的影响

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摘要

We examine the electrohydrodynamics in mixed polymer brush-coated nanochannels and the conformational dynamics of grafted polymers using molecular dynamics simulations. Charged (A) and neutral polymers (B) are alternately grafted on the channel surfaces. The effects of the electric field strength and solvent quality are addressed in detail. The dependence of electroosmotic flow characteristics and polymer conformational behavior on the solvent quality is influenced due to the change of the electric field strength. The enhanced electric field induces a collapse of the neutral polymer chains which adopt a highly extended conformation along the flow direction. However, the thickness of the charged polymer layer is affected weakly by the electric field, and even a slight swelling is identified for the A-B attraction case, implying the conformational coupling between two polymer species. Furthermore, the charged polymer chains incline entirely towards the electric field direction oppositely to the flow direction. More importantly, unlike the neutral polymer chains, the shape factor of the charged polymer chains, which is used to describe the overall shape of polymer chains, is reduced significantly with increasing the electric field strength, corresponding to a more coiled structure.
机译:我们使用分子动力学模拟检查混合聚合物刷涂型纳米中的电力流体和接枝聚合物的构象动态。带电(A)和中性聚合物(B)交替地接枝在通道表面上。详细解决了电场强度和溶剂质量的影响。由于电场强度的变化,电渗流动特性和聚合物构象行为对溶剂质量的依赖性影响。增强型电场引起中性聚合物链的塌陷,其沿着流动方向采用高度延伸的构象。然而,带电聚合物层的厚度通过电场弱影响,甚至鉴定用于A-B吸引情况的轻微溶胀,暗示了两个聚合物物种之间的构象耦合。此外,带电的聚合物链将完全倾斜地倾斜,朝向流动方向上的电场方向倾斜。更重要的是,与中性聚合物链不同,使用与更卷曲的结构相对应的电场强度显着降低了用于描述聚合物链的整体形状的带电聚合物链的形状因子。

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