Zhang Yu, Liu Biao-Lan, Wang Liang-Jie, Deng Ying-Hua, Zhou Shi-Yi, Feng Ji-Wen
Hubei Key Laboratory of Purification and Application of Plant Anti-Cancer Active Ingredients, School of Chemistry and Life Sciences, Hubei University of Education, Wuhan 430205, China.
Institute of Materials Research and Engineering (IMRE), Hubei University of Education, Wuhan 430205, China.
Polymers (Basel). 2019 May 7;11(5):818. doi: 10.3390/polym11050818.
This work provides a simple method for the preparation of thermoplastic chitosan using the most common dilute inorganic and organic acids in aqueous solutions, namely hydrochloric acid (HCl) and acetic acid (HAc). The melting plasticization behavior of chitosan under different concentrations and types of acid solution was investigated. By means of infrared spectra (IR), scanning electron microscope (SEM), X-ray diffraction (XRD), and other characterization methods, as well as a mechanical property test, it was found that as the acid solution concentration increased, the protonation effect was stronger and the plasticization performance showed a better trend. The structure and performance of the modified chitosan were optimal when the concentration of HCl was around 8 wt %. In addition, it was found that HCl had a better effect on the plasticization of chitosan than HAc, which was because the protonation ability of HCl was stronger than that of HAc. Unlike the casting method, the structure and properties of chitosan sheets prepared by thermoplastic processing were directly affected by protonation, however not by the interaction of anionic-cationic electrostatic attractions between the -NH groups of chitosan chains and the carboxyl groups of acetic acids or the chloridoid groups of hydrochloric acid.
本研究提供了一种简单的方法,可利用水溶液中最常见的稀无机酸和有机酸(即盐酸(HCl)和乙酸(HAc))制备热塑性壳聚糖。研究了壳聚糖在不同浓度和类型酸溶液中的熔融塑化行为。通过红外光谱(IR)、扫描电子显微镜(SEM)、X射线衍射(XRD)等表征方法以及力学性能测试发现,随着酸溶液浓度的增加,质子化作用增强,塑化性能呈良好趋势。当HCl浓度约为8 wt%时,改性壳聚糖的结构和性能最佳。此外,发现HCl对壳聚糖的塑化效果比HAc更好,这是因为HCl的质子化能力比HAc更强。与流延法不同,热塑性加工制备的壳聚糖片材的结构和性能直接受质子化影响,而非受壳聚糖链的-NH基团与乙酸羧基或盐酸氯代基团之间阴离子-阳离子静电吸引作用的影响。