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Reversing Redox Responsiveness of Hydrogels due to Supramolecular Interactions by Utilizing Double-Network Structures

机译:通过利用双网络结构,逆转超分子相互作用引起的水凝胶的氧化还原响应性

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Stimuli-responsive hydrogels have been actively researched, and some of them have been put into practical use. When we create and use stimuli-responsive hydrogel materials, controlling stimuli responsiveness of hydrogels is a very important issue. In this research, we prepared hydrogels having single-network (SN) or double-network (DN) gel structures with the host guest interaction groups cyclodextrin and methyl viologen and evaluated their stimuli responsiveness. The results of the tensile and compression tests showed that the hydrogels with SN and DN structures exhibited opposite stimuli responsiveness in response to the redox reaction of methyl viologen through the association and dissociation of the host molecule, beta-cyclodextrin, and the guest molecule, methyl viologen. Spectroscopic measurements and rheological studies all indicated that this difference in stimuli responsiveness originated from the polymer-network structures. In addition, a chemically cross-linked DN gel was prepared and its redox responsiveness was evaluated.
机译:刺激响应的水凝胶已经积极研究,其中一些已经投入实际使用。当我们创造和使用刺激响应的水凝胶材料时,控制水凝胶的刺激反应性是一个非常重要的问题。在该研究中,我们制备具有单网(Sn)或双网络(DN)凝胶结构的水凝胶,其具有主体访客相互作用基团环糊精和甲基viologen,并评估它们的刺激反应性。拉伸和压缩试验的结果表明,具有Sn和DN结构的水凝胶表现出相反的刺激反应,响应甲基Viologen通过宿主分子,β-环糊精和客体分子,甲基的结合和解离viologen。光谱测量和流变研究均表明,刺激反应性的这种差异来自聚合物 - 网络结构。此外,制备化学交联的DN凝胶,评价其氧化还原反应性。

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