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Donnan Contribution and Specific Ion Effects in Swelling of Cationic Hydrogels are Additive: Combined High-Resolution Experiments and Finite Element Modeling

机译:阳离子水凝胶肿胀中的唐南贡献和特异性离子效应是添加剂:高分辨率实验和有限元建模

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摘要

Finite element modeling applied to analyze experimentally determined hydrogel swelling data provides quantitative description of the hydrogel in the aqueous solutions with well-defined ionic content and environmental parameters. In the present study, we expand this strategy to analysis of swelling of hydrogels over an extended concentration of salt where the Donnan contribution and specific ion effects are dominating at different regimes. Dynamics and equilibrium swelling were determined for acrylamide and cationic acrylamide-based hydrogels by high-resolution interferometry technique for step-wise increase in NaCl and NaBr concentration up to 2 M. Although increased hydrogel swelling volume with increasing salt concentration was the dominant trend for the uncharged hydrogel, the weakly charged cationic hydrogel was observed to shrink for increasing salt concentration up to 0.1 M, followed by swelling at higher salt concentrations. The initial shrinking is due to the ionic equilibration accounted for by a Donnan term. Comparison of the swelling responses at high NaCl and NaBr concentrations between the uncharged and the cationic hydrogel showed similar specific ion effects. This indicates that the ion non-specific Donnan contribution and specific ion effects are additive in the case where they are occurring in well separated ranges of salt concentration. We develop a novel finite element model including both these mechanisms to account for the observed swelling in aqueous salt solution. In particular, a salt-specific, concentration-dependent Flory–Huggins parameter was introduced for the specific ion effects. This is the first report on finite element modeling of hydrogels including specific ionic effects and underpins improvement of the mechanistic insight of hydrogel swelling that can be used to predict its response to environmental change.
机译:用于分析实验确定的水凝胶溶胀数据的有限元建模在具有明确定义的离子含量和环境参数的水溶液中提供了水凝胶的定量描述。在本研究中,我们扩大了这种策略,分析了水凝胶的肿胀,在延长浓度的盐中,唐南贡献和特定离子效应在不同的方案中占据主导地位。通过高分辨率干涉法测定丙烯酰胺和阳离子丙烯酰胺基水凝胶的动力学和平衡溶胀,所述NaCl和Nabr浓度高达2米的逐步增加。虽然随着盐浓度的增加,水凝胶溶胀体积增加是所占的主要趋势不带电的水凝胶,观察到弱带阳离子水凝胶以缩小盐浓度高达0.1μm,然后以较高的盐浓度膨胀。初始缩小是由于龙南术语的离子平衡。在不带电和阳离子水凝胶之间的高NaCl和NaBr浓度下的溶胀反应的比较显示出类似的特定离子效应。这表明离子非特异性Donnan贡献和特定离子效应是在盐浓度良好的盐浓度范围内发生的情况下添加剂。我们开发一种新的有限元模型,包括这些机制,以考虑观察到的盐水溶液中的溶胀。特别地,引入了特异性浓度依赖性的血液 - Huggins参数,用于特定的离子效应。这是关于水凝胶有限元建模的第一个报告,包括特定的离子效应和水凝胶肿胀机械洞察力的基础,可用于预测其对环境变化的反应。

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