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Interpenetrating hydrogel networks based on polyacrylamide and poly(itaconic acid): synthesis and characterization

机译:基于聚丙烯酰胺和聚衣康酸的互穿水凝胶网络:合成与表征

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摘要

The synthesis of sequential and simultaneous semi-interpenetrating hydrogel networks (IPNs) based on polyacrylamide (PAAm) and poly(itaconic acid) (PICA) is described. Polyacrylamide was used as a host polymer. Physical properties of IPN hydrogels were determined by IR, swelling, extraction and density measurements. No indication for the formation of hydrogen-bonded complexation was observed by IR spectroscopy. the extraction results showed that the grafting level between the two components of PAAm/PICA in simultaneous semi-IPN is higher than that observed in sequential IPNS. These results confirm that the decrease in swelling ratios with PICA contents is probably due to the entanglement effect. The properties of IPN hydrogels were found to be dependent on the composition and the type of IPN. Both sequential and simultaneous IPNs have quite different morphologies compared to the pure PAAm host hydrogel.
机译:描述了基于聚丙烯酰胺(PAAm)和聚衣康酸(PICA)的顺序和同时半互穿的水凝胶网络(IPNs)的合成。聚丙烯酰胺用作主体聚合物。 IPN水凝胶的物理性质通过IR,溶胀,提取和密度测量来确定。通过IR光谱未观察到形成氢键结合的络合物的迹象。提取结果表明,同时半IPN中PAAm / PICA两种组分之间的接枝水平高于顺序IPNS中的接枝水平。这些结果证实,随着PICA含量的增加,溶胀率的降低可能是由于缠结效应。发现IPN水凝胶的性质取决于IPN的组成和类型。与纯PAAm宿主水凝胶相比,顺序IPN和同时IPN都具有完全不同的形态。

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