动态力学分析
材料科学
淀粉
热塑性塑料
玻璃化转变
纳米复合材料
复合材料
蒙脱石
增塑剂
极限抗拉强度
化学工程
聚合物
化学
有机化学
工程类
作者
Natalia Smidova,Hamed Peidayesh,Anton Baran,Oľga Fričová,Mária Kovaľaková,Ružena Králiková,Ivan Chodák
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2023-01-17
卷期号:16 (3): 900-900
摘要
Thermoplastic starch (TPS) consisting of corn starch and glycerol as a plasticizer, and TPS-montmorillonite (MMT) nanocomposite were stored at room temperature in the air with relative humidities (RH) of 11, 55 and 85% for seven weeks. Mechanical testing and dynamic mechanical thermal analysis (DMTA) were performed to detect changes in their mechanical properties. Solid-state NMR spectroscopy monitoring the changes in molecular mobility in the samples provided an insight into relations between mechanical properties and local structure. The results of mechanical testing indicated that the addition of MMT results in the increase in the tensile strength and Young’s modulus while elongation at break decreased, indicating the reinforcing effect of MMT. DMTA experiments revealed a decrease in glass transition temperature of starch-rich phase below room temperature for samples stored at higher RH (55 and 85%). This indicates that absorbed water molecules had additional plasticizing effect on starch resulting in higher mobility of starch chain segments. Recrystallization in these samples was deduced from the shape of cross-polarization magic-angle spinning 13C NMR spectra. The shape of broad-line 1H NMR spectra reflected changes in molecular mobility in the studied samples during seven weeks of storage and revealed that a high amount of water molecules impacts the starch intermolecular hydrogen bond density.
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