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Nanostructured biocomposite films of high toughness based on native chitin nanofibers and chitosan

机译:基于天然几丁质纳米纤维和壳聚糖的高韧性纳米结构生物复合膜

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摘要

Chitosan is widely used in films for packaging applications. Chitosan reinforcement by stiff particles or fibers is usually obtained at the expense of lowered ductility and toughness. Here, chitosan film reinforcement by a new type of native chitin nanofibers is reported. Films are prepared by casting from colloidal suspensions of chitin in dissolved chitosan. The nanocomposite films are chitin nanofiber networks in chitosan matrix. Characterization is carried out by dynamic light scattering, quartz crystal microbalance, field emission scanning electron microscopy, tensile tests and dynamic mechanical analysis. The polymer matrix nanocomposites were produced in volume fractions of 8, 22, and 56% chitin nanofibers. Favorable chitin-chitosan synergy for colloidal dispersion is demonstrated. Also, lowered moisture sorption is observed for the composites, probably due to the favorable chitin-chitosan interface. The highest toughness (area under stress-strain curve) was observed at 8 vol% chitin content. The toughening mechanisms and the need for well-dispersed chitin nanofibers is discussed. Finally, desired structural characteristics of ductile chitin biocomposites are discussed.
机译:壳聚糖广泛用于包装用薄膜。通常以降低的延展性和韧性为代价获得通过硬质颗粒或纤维增强的壳聚糖。在此,报道了通过新型的天然几丁质纳米纤维对壳聚糖膜的增强作用。通过从几丁质在溶解的壳聚糖中的胶体悬浮液流延来制备膜。纳米复合膜是壳聚糖基质中的几丁质纳米纤维网络。通过动态光散射,石英晶体微量天平,场发射扫描电子显微镜,拉伸试验和动态力学分析进行表征。聚合物基质纳米复合材料的体积分数为8、22和56%几丁质纳米纤维。证明了有利的几丁质-壳聚糖对胶体分散的协同作用。另外,观察到复合材料的吸湿性降低,这可能是由于有利的几丁质-壳聚糖界面。在几丁质含量为8%(体积)时观察到了最高的韧性(应力-应变曲线下的面积)。讨论了增韧机理以及对几丁质纳米纤维的充分分散的需求。最后,讨论了延性甲壳质生物复合材料的所需结构特征。

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