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首页> 外文期刊>Modelling and simulation in materials science and engineering >Shearing and compression behavior of end-grafted polyelectrolyte brushes with mono-and trivalent counterions: A molecular dynamics simulation
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Shearing and compression behavior of end-grafted polyelectrolyte brushes with mono-and trivalent counterions: A molecular dynamics simulation

机译:具有一价和三价抗衡离子的端接枝聚电解质刷子的剪切和压缩行为:分子动力学模拟

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摘要

We investigate polyelectrolytes end-grafted on two apposing walls using molecular dynamics simulation techniques. Monovalent and trivalent counterions are explicitly treated. Under normal compression, the osmotic pressure is examined in detail by decomposing it into various virial terms. It has been found that at small wall separations the increase in the osmotic pressure can be ascribed to the increase in the short-range virial term. At large wall separations, a negative osmotic pressure is observed in trivalent systems. Moreover, we study the effect of lateral shear on the density profiles of monomers and counterions, the net charge distribution, the local pressure tensor, the degree of interpenetration and the friction coefficient. At large shear ratios, the electrostatic interactions are weakened at the interface between two brushes. It is worth noting that although the magnitudes of the normal and shear stress components for the trivalent case are significantly lesser than those for the monovalent case, the friction coefficient is larger in the trivalent systems.
机译:我们使用分子动力学模拟技术研究端接在两个对置壁上的聚电解质。一价和三价抗衡离子得到明确处理。在正常压缩下,通过将渗透压分解成各种病毒学术语来详细检查渗透压。已经发现,在较小的壁间距下,渗透压的增加可以归因于短程病毒期的增加。在较大的壁间距下,在三价系统中观察到负渗透压。此外,我们研究了横向剪切对单体和抗衡离子的密度分布,净电荷分布,局部压力张量,互穿程度和摩擦系数的影响。在较大的剪切比下,两个刷子之间的界面处的静电相互作用会减弱。值得注意的是,尽管三价情况下的法向应力和剪应力分量的大小显着小于单价情况下的正应力和剪应力分量的大小,但在三价系统中摩擦系数更大。

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