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Biodegradable Chitosan Films with ZnO Nanoparticles Synthesized Using Food Industry By-Products—Production and Characterization

机译:可生物降解的壳聚糖薄膜用ZnO纳米颗粒合成使用食品工业副产物 - 生产和表征

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This work aimed to produce bionanocomposites of chitosan incorporated with zinc oxide nanoparticles (ZnO NPs) synthesized using food industry by-products and to characterize them. Such nanoparticles are highlighted due to their low cost, antimicrobial activity, accessibility, and sustainability synthesis. Four different levels of ZnO NPs (0, 0.5, 1.0, and 2.0% w/w of chitosan) were tested, and the bionanocomposites were characterized in terms of their hydrophobicity, mechanical, optical, and barrier properties. Overall, the incorporation of ZnO NPs changed the composites from brittle to ductile, with enhanced elongation at break and reduced Young Modulus and tensile strength. Thus, ZnO NPs acted as plasticizer, turning the films more flexible, due to the presence of organic compounds on the NPs. This also favored permeability of oxygen and of water vapor, but the good barrier properties were maintained. Optical properties did not change statistically with the ZnO NPs incorporation. Thus, the characterization presented in this paper may contribute to support a decision on the choice of the material’s final application.
机译:该工作旨在生产与氧化锌纳米粒子(ZnO NPS)的壳聚糖的生物组成,使用食品工业副产物合成并表征它们。由于其低成本,抗微生物活性,可访问性和可持续性合成,因此突出了这种纳米颗粒。测试四种不同水平的ZnO NPS(0,0.5,1.0和2.0%w / w的壳聚糖),并在其疏水性,机械,光学和屏障性方面表征了脱硫复合物。总的来说,ZnO NP的掺入将复合材料从脆性改变为延展性,并且在断裂时增强伸长率和降低的杨氏模量和拉伸强度。因此,由于在NPS上存在有机化合物,ZnO NPS作用为增塑剂,使膜更柔韧。这也赞成氧气和水蒸气的渗透性,但保持良好的阻隔性能。光学属性在zno nps掺入中没有统计变化。因此,本文呈现的表征可能有助于支持关于材料最终应用的决定。

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