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首页> 外文期刊>Macromolecules >Monte Carlo simulations of a single polyelectrolyte in solution: Activity coefficients of the simple ions and application to viscosity measurements
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Monte Carlo simulations of a single polyelectrolyte in solution: Activity coefficients of the simple ions and application to viscosity measurements

机译:溶液中单个聚电解质的蒙特卡洛模拟:简单离子的活度系数及其在粘度测量中的应用

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摘要

Monte Carlo simulations of linear polyelectrolytes together with explicit ions have been performed in a spherical cell model to study conformational changes and activity coefficients in relation to the isoionic dilution method used in viscosity measurements. The results show that it is possible to define an effective ionic strength that will keep the average chain conformation constant on isoionic dilution and that this ionic strength can be predicted from the activity of the counterions, as has been suggested experimentally. Activity coefficients have been calculated from the simulations and compared with theoretical estimates based on various applications of the Debye-Huckel approximation, including Manning theory and an expression for a rigid rod with discrete charges. Manning theory generally gives poor agreement with the simulations, while the rigid-rod expression, which includes an ion-ion term, is able to predict the mean activity coefficient at not too high charge densities. Assuming that the co-ions are completely inert, the rigid-rod expression also leads to a reasonable approximation for the counterion activity. The simulation results have been used as input for two theoretical expressions for the reduced viscosity. The first, which is only based on the average chain conformation, does not reproduce the qualitative features of experimental curves. Our chains, with only 80 monomers, do not display large conformational changes upon dilution with salt solutions of varying ionic strength. In contrast, the second viscosity expression, which takes intermolecular electrostatic interactions into account, gives a correct qualitative behavior. [References: 51]
机译:线性聚电解质和显性离子的蒙特卡罗模拟已在球形电池模型中进行,以研究与粘度测量中使用的等离子稀释法相关的构象变化和活度系数。结果表明,有可能定义一种有效的离子强度,该离子强度将在等离子稀释时保持平均链构象恒定,并且该离子强度可以根据抗衡离子的活性进行预测,如实验所示。活度系数已通过模拟计算得出,并与基于Debye-Huckel近似的各种应用(包括曼宁理论和带有离散电荷的刚性杆的表达式)的理论估计值进行了比较。曼宁理论通常不能很好地与模拟相吻合,而包含离子-离子项的刚性杆表达式能够在不太高的电荷密度下预测平均活度系数。假定共离子是完全惰性的,则刚性棒的表达还导致抗衡离子活性的合理近似。仿真结果已用作降低粘度的两个理论表达式的输入。第一,仅基于平均链构象,不重现实验曲线的定性特征。我们的链只有80个单体,用不同离子强度的盐溶液稀释后,不会显示出大的构象变化。相反,考虑分子间静电相互作用的第二粘度表达式给出了正确的定性行为。 [参考:51]

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