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Synthesis and Characteristics of Interpenetrating Polymer Network Hydrogen Composed of Chitosan and Poly (acryliic acid)

机译:壳聚糖与聚丙烯酸互穿聚合物网络氢的合成及表征

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摘要

Interpenetrating polymer network (IPN) hydrogels complsed of chitosan and poly (acrylic acid) (PAAc) were synthesized by UV irradiation method, and their structure, crystallinity, swelling behavior, thermal property, and mechanical property were investigated. Chitosan/PAAc IPNs exhibited relatively high equilibrium water content and also showed reasonale sensitivity to pH. From the swelling behaviors at various pH's, Fourier transform infrared spectra at high temperature and thermal analysis confirmed the formation of polyelectrolyte complex due to the reaction between amino groups in chitosan and carboxyl groups in PAAc. For this reason, even at a swollen states, the present chitosan/PAAx IPNs possess good mechanical properties.Particularly, the CA-2 sample (with a weight ratio of chitosan/PAAc=50/50, molar ratio [NH_2]/[COOH] =25/75) showed the lowest equilibrium water content and free water content, attributed to the more compact structure of the polyelectrolyte than CA-1 or CA-3 due to the high amount of interchain bond within the IPN.
机译:通过紫外辐射法合成了由壳聚糖和聚丙烯酸(PAAc)组成的互穿聚合物网络(IPN)水凝胶,并对其结构,结晶度,溶胀行为,热性能和力学性能进行了研究。壳聚糖/ PAAc IPNs表现出相对较高的平衡水含量,并且还表现出对pH值的敏感性。从在各种pH值下的溶胀行为,高温下的傅立叶变换红外光谱和热分析证实了由于壳聚糖中的氨基与PAAc中的羧基之间的反应而形成了聚电解质复合物。因此,即使在溶胀状态下,目前的壳聚糖/ PAAx IPN仍具有良好的机械性能。特别是CA-2样品(壳聚糖/ PAAc的重量比= 50/50,摩尔比[NH_2] / [COOH ] = 25/75)显示最低的平衡水含量和游离水含量,这归因于由于IPN内大量的链间键,聚电解质的结构比CA-1或CA-3更紧密。

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