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Thermo-responsive sandwiched-like membranes of IPN-PNIPAAm/PAAm hydrogels

机译:IPN-PNIPAAm / PAAm水凝胶的热敏夹心膜

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The synthesis of sandwiched-like IPN hydrogels having cross-linked PNIPAAm interpenetrated into PAAm networks was carried out by UV-induced polymerization using potassium periodate as a sensitizer. NIPAAm monomers and MBAAm cross-linker were co-polymerized inside previously synthesized cross-linked PAAm. Through SEM images, we observed that the hydrogel membranes were formed by three layers; the internal layer was fully involved by the two others. Significant morphological difference between the internal and external layers was also observed. Thus, sandwiched-like interpenetrating polymer networks were obtained. The internal layer shrank significantly after warming the swollen hydrogel above LCST of PNIPAAm in water, 30-35 ℃ while the external layers remained swollen and highly porous due to the hydrophilicity of PAAm. The experiments performed at 40 ℃ revealed that the hydrogels shrank considerably. Collapsed PNIPAAm chains induced a substantial contraction of the internal hydrogel layer. The hydrogel contraction was accompanied by an increase in gel strength and elasticity modulus. The presence of the PNIPAAm network in the internal layer reinforced the hydrogel and this effect was more pronounced above LCST. The permeability of sandwich-like membrane significantly rather decreases as the temperature increases. There was a decrease in the permeability of 52% as the temperature was increased from 25 to 40 ℃. It was suggested that the structural changes in the sandwich membrane induce to significant flux control.
机译:使用高碘酸钾作为敏化剂,通过紫外线诱导的聚合反应进行合成,使交联的PNIPAAm互穿到PAAm网络中的三明治状IPN水凝胶的合成。 NIPAAm单体和MBAAm交联剂在先前合成的交联PAAm中共聚。通过SEM图像,我们观察到水凝胶膜是由三层形成的。内部层由另外两个完全参与。还观察到内层和外层之间的显着形态差异。因此,获得了夹层状互穿聚合物网络。在30-35℃的水中将溶胀的水凝胶加热到PNIPAAm的LCST以上后,内层明显收缩,而由于PAAm的亲水性,外层保持溶胀且高度多孔。在40℃进行的实验表明,水凝胶明显收缩。崩溃的PNIPAAm链导致内部水凝胶层大量收缩。水凝胶收缩伴随着凝胶强度和弹性模量的增加。内层中PNIPAAm网络的存在增强了水凝胶,这种作用在LCST之上更为明显。夹层状膜的渗透性随着温度升高而明显降低。随着温度从25℃升高到40℃,渗透率降低了52%。有人认为,夹心膜的结构变化会导致明显的通量控制。

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