流变学
热塑性塑料
动态力学分析
淀粉
材料科学
极限抗拉强度
共价键
化学改性
环氧氯丙烷
溶解度
化学工程
复合材料
变性淀粉
高分子化学
化学
聚合物
有机化学
工程类
作者
Hamed Peidayesh,Abolfazl Heydari,Katarína Mosnáčková,Ivan Chodák
标识
DOI:10.1016/j.carbpol.2021.118250
摘要
This study is focused on enhancing the stability of mechanical and chemical properties of thermoplastic starch (TPS) by dual crosslinking strategy through melt processing conditions. The dually crosslinked TPS was prepared by in situ reaction of starch, glycerol, and epichlorohydrin (ECH), resulting in both noncovalent and covalent bond formation. The TPS was characterized by tensile testing, dynamic mechanical analysis (DMTA), rheology, and solubility in water. A substantial increase in tensile strength, Young's modulus, insoluble portion, and stability in water for dually crosslinked TPS was observed in comparison with conventional TPS. The rheology results indicated that the ECH induced the formation of 3D networks and significantly limited the chain mobility of the melted TPS, resulting in an extended relaxation process, which was also verified by DMTA. The suggested strategy avoids any chemical modification pretreatment of starch for introducing covalent bonds into TPS before one-step mixing using the melt processing technique.
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