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Effect of crosslink-induced heterogeneities on the transport and deformation behavior of hydrophilic ionic polymer membranes

机译:的影响在crosslink-induced异构性问题亲水的运输和变形行为离子聚合物膜

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Hydration and crosslinking in hydrophilic ionic polymers give rise to microstructural features which affect diffusion of water and proton conductivity in them. Crosslinking in these systems gives rise to the presence of crosslink heterogeneities resulting in more-crosslinked domains and less-crosslinked regions. Because of the difference in elasticity between the two regions the polymer matrix swells differentially resulting in anomalous water sorption kinetics. The diffused water is distributed among hydroxyl and sulfonic groups and the crosslinking alters this distribution resulting in an increase in conductivity. Hydration and crosslinking in hydrophilic ionic polymers give rise to microstructural features that affect the diffusion of water and proton conductivity. In this work, we show that the local heterogeneities arising from domains that are more cross-linked and regions that are less cross-linked result in differential swelling behavior during diffusion of water and differential stresses during oscillatory deformation. Distinct signatures in the water uptake kinetics and the dynamic mechanical behavior are shown to be due to these heterogeneities, which are prominent at high and intermediate water contents and are unnoticeable or absent at low water contents. Using polyvinyl alcohol (PVA) cross-linked with sulfosuccinic acid (SSA) as a sample system, we show that differential swelling can lead to anomalous diffusion. In addition, the deformation of these polymers, carried out through large amplitude oscillatory shear experiments, results in strain hardening behavior due to the increased viscous dissipation arising from the differential movements of the polymer network due to the local heterogeneities. The proton conductivity of these materials is affected not only by these heterogeneities but also by the water distribution among the two types of hydrophilic groups (-SO3H and -OH) present in the system. Overall, we demonstrate the important role of crosslink heterogeneities and competitive hydration on the transport and deformation behavior of cross-linked hydrophilic ionic polymer systems.
机译:水合作用,在亲水离子交联聚合物微观结构特征影响扩散的水和质子电导率。系统产生交联的存在异构性问题导致more-crosslinked域和less-crosslinked地区。两者之间的差异弹性聚合物基质膨胀不同地区导致异常的水吸附动力学。羟基之间的扩散水分布和磺酸团体和交联改变这个分布导致的增加导电性。亲水离子聚合物产生微观结构特性的影响扩散的水和质子电导率。这项工作中,我们表明,当地的异构性问题因域名更交联和地区,不交联导致在扩散微分膨胀行为水和微分压力振动变形。水吸收动力学和动态力学行为是由于这些所示在高和异构性问题,突出中间水内容和忽略在低含水量或缺席。与sulfosuccinic酒精(PVA)交联酸(SSA)作为一个示例系统,我们证明微分肿胀会导致异常扩散。聚合物,通过进行大的振幅振荡剪切实验,导致应变硬化行为由于粘性增加耗散引起的微分由于当地的聚合物网络的运动异构性问题。这些材料不仅影响异构性问题也由水分布在两种类型的亲水性组(-SO3H和-哦)系统中存在。总的来说,我们展示的重要作用交联异构性问题和竞争水化的运输和变形交联亲水离子的行为聚合物系统。

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