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首页> 外文期刊>Macromolecular symposia >Novel Interpenetrating Networks (IPNs) Hydrogels Prepared In Situ by Liquid-Phase Photopolymerization
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Novel Interpenetrating Networks (IPNs) Hydrogels Prepared In Situ by Liquid-Phase Photopolymerization

机译:液相光聚合原位制备的新型互穿网络(IPNs)水凝胶

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Novel interpenetrating networks (IPNs) hydrogels responsive to temperature were prepared in situ by liquid-phase photopolymerization. The first network of the IPNs (poly isopropyl acrylamide) were formed with a special kind of hectorite (Laponite XLS) modified by tetrasodium pyrophosphate as cross-linker and 2-oxogultaric acid as photoinitiator. The samples were subsequently immersed in an acrylamide (AAm) aqueous solution for at least one day for preparing IPNs hydrogels, in which acrylamide aqueous solution containing N,N-Dimetyl acrylamide (MBAA) as cross-linker and 2-oxogultaric acid as photoinitiator. Then the second networks were in situ formed by introducing ultraviolet light irradiated PNIPAAm gels. The swelling/deswelling behaviors of IPNs hydrogels were measured. Compared with the corresponding nanocomposite PNIPAAm hydroges(NC hydrogels), chemically cross-linked PNIPAAm and PAAm IPNs hydrogels, the results indicate that the new IPN hydrogel has a faster deswelling rate above its LCST (32 °C). The effect was explained as being an additional contribution of the PAAm chains in IPN hydrogels, which may act as a water-releasing channel when the hydrophobic aggregation of PNIPA takes place.
机译:通过液相光聚合原位制备了新型的互穿网络(IPNs)对温度响应的水凝胶。 IPN的第一个网络(聚异丙基丙烯酰胺)由一种特殊的锂蒙脱石(Laponite XLS)形成,该锂蒙脱石以焦磷酸四钠为交联剂,以2-氧杂草酸为光引发剂改性。随后将样品浸入丙烯酰胺(AAm)水溶液中至少一天,以制备IPNs水凝胶,其中含有N,N-二甲基丙烯酰胺(MBAA)作为交联剂和2-氧杂戊二酸作为光引发剂的丙烯酰胺水溶液。然后通过引入紫外线照射的PNIPAAm凝胶原位形成第二网络。测量了IPNs水凝胶的溶胀/溶胀行为。与相应的纳米复合PNIPAAm水凝胶(NC水凝胶),化学交联的PNIPAAm和PAAm IPNs水凝胶相比,结果表明,新型IPN水凝胶的溶胀速率高于LCST(32°C)。该作用被解释为是IPN水凝胶中PAAm链的另一贡献,当PNIPA发生疏水性聚集时,PAAm链可以充当释水通道。

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