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Side Chains and the Insufficient Lubrication of Water in Polyacrylamide Hydrogel—A New Insight

机译:聚丙烯酰胺水凝胶中的侧链和水润滑不足-新的见解

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摘要

Existing theories cannot predict the mechanical property changes of polyacrylamide hydrogels with different water content because of the absence of side chains. In this study, polyacrylamide hydrogels are prepared and tested to investigate the side chain effect on their mechanical properties. First, the comparison between the effective chain density and total chain density provides proof of the large amount of side chains in the polymer network of PAAm hydrogel. We propose a practical chain density fraction to measure the side chain fraction. Then, the abnormal Young’s moduli-polymer volume fraction relationship reveals that side chains affect the mechanical properties of hydrogel through the insufficient lubrication of water. Water confined in narrow space within a molecular-level size can bear shear force to provide extra deformation resistance. A constitutive mode considering the effect of the insufficient lubrication of water is proposed. Combining this constitutive model with experimental results, we find that this insufficient lubrication of water exists even in equilibrium PAAm hydrogel. Molecular dynamics simulations reveal that this insufficient lubrication of water comes from the constraint of polymer chains. It also demonstrates that when there is insufficient lubrication, the rearrangement of water molecules leads to the persistent energy dissipation in the Mullins effect of PAAm hydrogel.
机译:由于没有侧链,现有理论无法预测具有不同水含量的聚丙烯酰胺水凝胶的机械性能变化。在这项研究中,聚丙烯酰胺水凝胶的制备和测试是为了研究侧链对其机械性能的影响。首先,有效链密度和总链密度之间的比较提供了PAAm水凝胶聚合物网络中大量侧链的证据。我们提出了一种实用的链密度分数来测量侧链分数。然后,异常的杨氏模量-聚合物体积分数关系揭示了侧链由于水润滑不足而影响水凝胶的机械性能。局限在分子水平尺寸内的狭窄空间中的水可以承受剪切力,以提供额外的抗变形能力。提出了一种考虑水润滑不足的本构模型。结合本构模型与实验结果,我们发现即使在平衡的PAAm水凝胶中也存在这种水润滑不足的情况。分子动力学模拟表明,水润滑不足是由于聚合物链的约束。这也表明,当润滑不足时,水分子的重排会导致PAAm水凝胶的Mullins效应持续消耗能量。

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