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Synthesis and Properties of pH-Thermo Dual Responsive Semi-IPN Hydrogels Based on NN’-Diethylacrylamide and Itaconamic Acid

机译:基于NN’-二乙基丙烯酰胺和衣康康酸的pH-热双反应半IPN水凝胶的合成与性能

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摘要

A series of semi-interpenetrating polymer network (semi-IPN) hydrogels based on , ’-diethylacrylamide (DEA) and itaconamic acid (IAM) were synthesized by changing the molar ratio of linear copolymer P(DEA- -IAM) and DEA monomer. Linear copolymer P(DEA- -IAM) was introduced into a solution of DEA monomer to prepare pH-thermo dual responsive P(DEA- -IAM)/PDEA semi-IPN hydrogels. The thermal gravimetric analysis (TGA) revealed that the semi-IPN hydrogel has a higher thermal stability than the conventional hydrogel, while the interior morphology by scanning electron microscopy (SEM) showed a porous structure with the pore sizes could be controlled by changing the ratio of linear copolymer in the obtained hydrogels. The oscillatory parallel-plate rheological measurements and compression tests demonstrated a viscoelastic behavior and superior mechanical properties of the semi-IPN hydrogels. Besides, the lower critical solution temperature (LCST) of the linear copolymers increased with the increase of IAM content in the feed, while the semi-IPN hydrogels increased LCSTs with the increase of linear copolymer content introduced. The pH-thermo dual responsive of the hydrogels was investigated using the swelling behavior in various pH and temperature conditions. Finally, the swelling and deswelling rate of the hydrogels were also studied. The results indicated that the pH-thermo dual responsive semi-IPN hydrogels were synthesized successfully and may be a potential material for biomedical, drug delivery or absorption applications. The further applications of semi-IPN hydrogels are being conducted.
机译:通过改变线性共聚物P(DEA- -IAM)和DEA单体的摩尔比,合成了一系列基于α-二乙基丙烯酰胺(DEA)和衣康酸(IAM)的半互穿聚合物网络(semi-IPN)水凝胶。将线性共聚物P(DEA- -IAM)引入DEA单体溶液中,以制备pH热双反应型P(DEA- -IAM)/ PDEA半IPN水凝胶。热重分析(TGA)表明,半IPN水凝胶具有比常规水凝胶更高的热稳定性,而通过扫描电子显微镜(SEM)的内部形态显示出可以通过改变比例来控制孔径的多孔结构得到的水凝胶中的线性共聚物的含量。振荡平行板流变学测量和压缩测试表明,半IPN水凝胶具有粘弹性和优异的机械性能。此外,随着进料中IAM含量的增加,线性共聚物的较低临界溶液温度(LCST)升​​高,而随着引入的线性共聚物含量的增加,半IPN水凝胶使LCST升高。使用各种pH和温度条件下的溶胀行为研究了水凝胶的pH-热双重响应。最后,还研究了水凝胶的溶胀率和溶胀率。结果表明,pH-热双重响应半IPN水凝胶已成功合成,可能是生物医学,药物递送或吸收应用的潜在材料。半IPN水凝胶的进一步应用正在进行中。

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