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Phase Transition in Hydrogels of Thermoresponsive Interpenetrating Polymer Networks

机译:热敏互穿聚合物网络水凝胶中的相变

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摘要

We compared behavior of hydrogels of two types of thermoresponsive interpenetrating polymer networks (IPN), PNIPMAm/PNIPAm and PVCL/PNIPAm, during their phase transition. One or two transitions, depending on the ratio of both IPN components, were found by NMR and DSC. SANS results showed that compact multi-chain globules with gyration radius ~20 nm are formed in collapsed IPN hydrogels. A certain portion of spatially restricted bound water (HDO) was established for all studied IPNs in the phase transition region and at temperatures above the phase transition by NMR methods. Fraction of bound water slowly decreases with time. The separate signal of bound water in NMR spectra appears already in pretransition region at temperatures when polymer segments just begin to form collapsed structures. Higher content of bound water as found for collapsed PVCL/PNIPAm hydrogels in comparison with PNIPMAm/PNIPAm hydrogels is in accord with swelling experiments and lower values of the shear mechanical modulus, and shows the decisive role of bound water in this respect.
机译:我们比较了两种类型的热响应互穿聚合物网络(IPN),PNIPMAm / PNIPAm和PVCL / PNIPAm在其相变过程中的水凝胶行为。取决于两种IPN组分的比例,可以通过NMR和DSC发现一个或两个跃迁。 SANS结果表明,在坍塌的IPN水凝胶中形成了旋转半径约为20 nm的致密多链小球。通过NMR方法,为所有研究的IPN在相变区域和高于相变的温度下建立了一定比例的空间受限结合水(HDO)。结合水的分数随时间缓慢降低。当聚合物链段刚刚开始形成塌陷结构时,NMR光谱中结合水的单独信号已经出现在预转变区中。与PNIPMAm / PNIPAm水凝胶相比,塌陷的PVCL / PNIPAm水凝胶具有更高的结合水含量,这与溶胀实验和较低的剪切机械模量值是一致的,并且在这方面显示了结合水的决定性作用。

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