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首页> 外文期刊>Macromolecular chemistry and physics >Synthesis and properties of pH- and temperature-sensitive poly[(N-isopropylacrylamide)-co-(2-methylenebutane-1,4-dioic acid)] hydrogels
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Synthesis and properties of pH- and temperature-sensitive poly[(N-isopropylacrylamide)-co-(2-methylenebutane-1,4-dioic acid)] hydrogels

机译:pH和温度敏感型聚[(N-异丙基丙烯酰胺)-共-(2-亚甲基丁烷-1,4-二酸)]水凝胶的合成及性能

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Hydrogels of NIPA and MBDA were synthesized by free-radical crosslinking copolymerization with different monomer ratios and with two concentrations of the crosslinking agent. The aim of this work was to study the swelling behavior of these gels that are both temperature and pH sensitive. PNIPA hydrogels are typical examples of thermo-shrinking hydrogels with a LCST, T-C, around 31-34 degrees C. MBDA is a weakly ionizable monomer which imparts a pH sensitiveness to the copolymer hydro gels. The pH influence on the swelling behavior of the studied hydrogels was analyzed using deionized water and aqueous HCl and NaOH as swelling media. According to the results found in deionized water, the swelling processes of P(NIPA-MBDA) hydrogels follow second-order kinetics at 22 and 37 degrees C. ne equilibrium water content, W-infinity, and the rate constant, K, increased at greater concentrations of MBDA and decreased as the crosslinking agent concentration increased. As the MBDA content in the hydrogel increased, the collapsing of the hydrogels at higher temperatures than the LCST became of less importance. The degree of swelling of pure PNIPA hydrogels was not influenced by the pH of the swelling medium. However, this influence increased as the MBDA content increased. This was due to the fact that at low pH most of the MBDA units are in the protonated (neutral) form and at high pH in the ionized one.
机译:NIPA和MBDA的水凝胶是通过自由基交联共聚反应合成的,其中单体比例不同,交联剂的浓度为两种。这项工作的目的是研究温度和pH敏感的这些凝胶的溶胀行为。 PNIPA水凝胶是具有约31-34℃的LCST,T-C的热收缩水凝胶的典型实例。MBDA是弱电离性单体,其赋予共聚物水凝胶pH敏感性。用去离子水和HCl和NaOH水溶液作为溶胀介质,分析了pH对所研究水凝胶溶胀行为的影响。根据在去离子水中发现的结果,P(NIPA-MBDA)水凝胶的溶胀过程遵循22和37摄氏度的二级动力学。平衡水含量W无穷大,速率常数K在MBDA的浓度较高,并且随着交联剂浓度的增加而降低。随着水凝胶中MBDA含量的增加,在比LCST高的温度下水凝胶的塌陷变得不那么重要了。纯PNIPA水凝胶的溶胀度不受溶胀介质pH的影响。但是,此影响随着MBDA含量的增加而增加。这是由于以下事实:在低pH值下,大多数MBDA单元呈质子化(中性)形式,而在高pH值下则呈离子化。

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