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Molecular simulation of the swelling of polyelectrolyte gels by monovalent and divalent counterions

机译:一价和二价抗衡离子对聚电解质凝胶溶胀的分子模拟

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摘要

Permanently crosslinked polyelectrolyte gels are known to undergo discontinuous first-order volume phase transitions, the onset of which may be caused by a number of factors. In this study we examine the volumetric properties of such polyelectrolyte gels in relation to the progressive substitution of monovalent counterions by divalent counterions as the gels are equilibrated in solvents of different dielectric qualities. We compare the results of coarse-grained molecular dynamics simulations of polyelectrolyte gels with previous experimental measurements by others on polyacrylate gels. The simulations show that under equilibrium conditions there is an approximate cancellation between the electrostatic contribution and the counterion excluded-volume contribution to the osmotic pressure in the gel-solvent system; these two contributions to the osmotic pressure have, respectively, energetic and entropic origins. The finding of such a cancellation between the two contributions to the osmotic pressure of the gel-solvent system is consistent with experimental observations that the swelling behavior of polyelectrolyte gels can be described by equations of state for neutral gels. Based on these results, we show and explain that a modified form of the Flory–Huggins model for nonionic polymer solutions, which accounts for neither electrostatic effects nor counterion excluded-volume effects, fits both experimental and simulated data for polyelectrolyte gels. The Flory–Huggins interaction parameters obtained from regression to the simulation data are characteristic of ideal polymer solutions, whereas the experimentally obtained interaction parameters, particularly that associated with the third virial coefficient, exhibit a significant departure from ideality, leading us to conclude that further enhancements to the simulation model, such as the inclusion of excess salt, the allowance for size asymmetric electrolytes, or the use of a distance-dependent solvent dielectricity model, may be required. Molecular simulations also reveal that the condensation of divalent counterions onto the polyelectrolyte network backbone occurs preferentially over that of monovalent counterions.
机译:已知永久交联的聚电解质凝胶会经历不连续的一级体积相变,其起因可能是由多种因素引起的。在这项研究中,我们检查了这种聚电解质凝胶的体积性质,这些凝胶与二价抗衡离子逐步取代一价抗衡离子有关,因为凝胶已在不同介电性质的溶剂中达到平衡。我们将聚电解质凝胶的粗粒度分子动力学模拟结果与其他人对聚丙烯酸酯凝胶的先前实验测量结果进行比较。模拟表明,在平衡条件下,凝胶-溶剂体系中的静电作用和抗衡离子排除体积对渗透压的作用之间存在近似抵消;这两种对渗透压的贡献分别来自能量和熵的起源。在对凝胶-溶剂系统的渗透压的两个贡献之间发现了这种抵消,这与实验观察一致,即实验可以通过中性凝胶的状态方程描述聚电解质凝胶的溶胀行为。基于这些结果,我们显示并解释了非离子聚合物溶液的Flory-Huggins模型的修改形式,既不考虑静电效应也不排除抗衡离子的体积效应,既适合于聚电解质凝胶的实验数据,也适合于模拟数据。从回归到模拟数据得到的Flory-Huggins相互作用参数是理想聚合物溶液的特征,而实验获得的相互作用参数,特别是与第三维里系数相关的相互作用参数,表现出与理想值的显着偏离,使我们得出结论,进一步增强对于模拟模型,可能需要添加过量的盐,允许尺寸不对称的电解质,或者使用与距离相关的溶剂介电模型。分子模拟还显示,二价抗衡离子在聚电解质网络主链上的缩合优先于单价抗衡离子的缩合。

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