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ZnO-reinforced poly(3-hydroxybutyrate-co-3-hydroxyvalerate) bionanocomposites with antimicrobial function for food packaging

机译:ZnO增强的具有抗菌功能的聚3-羟基丁酸酯-3-羟基戊酸酯共生复合材料

摘要

Biodegradable nanocomposites were prepared by adding ZnO nanoparticles to bacterial polyester poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) via solution casting technique. The morphology, thermal, mechanical, antibacterial, barrier, and migration properties of the nanocomposites were analyzed. The nanoparticles were uniformly dispersed within PHBV without the aid of coupling agents, and acted effectively as nucleating agents, raising the crystallization temperature and the level of crystallinity of the matrix while decreasing its crystallite size. A gradual rise in thermal stability was found with increasing ZnO loading, since the nanofillers hinder the diffusion of volatiles generated during the decomposition process. The nanocomposites displayed superior stiffness, strength, toughness, and glass transition temperature, whereas they displayed reduced water uptake and oxygen and water vapor permeability compared to the neat biopolymer, related to the strong matrix-nanofiller interfacial adhesion attained via hydrogen bonding interactions. At an optimal concentration of 4.0 wt % ZnO, the tensile strength and Young's and storage moduli showed a maximum that coincided with the highest crystallinity and the best barrier properties. PHBV/ZnO films showed antibacterial activity against human pathogen bacteria, and the effect on Escherichia coli was stronger than on Staphylococcus aureus. The overall migration levels of the nanocomposites in both nonpolar and polar simulants dropped upon increasing nanoparticle content, and were well below the limits required by the current normative for food packaging materials. These sustainable nanomaterials with antimicrobial function are very promising to be used as containers for beverage and food products as well as for disposable applications like cutlery or overwrap films.
机译:通过溶液浇铸技术将ZnO纳米粒子添加到细菌聚酯聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBV)中来制备可生物降解的纳米复合材料。分析了纳米复合材料的形态,热,机械,抗菌,阻隔和迁移性能。纳米颗粒无需偶联剂即可均匀分散在PHBV内,并有效地充当成核剂,提高了结晶温度和基质的结晶度,同时减小了其微晶尺寸。发现随着ZnO含量的增加,热稳定性逐渐提高,因为纳米填料阻碍了分解过程中产生的挥发物的扩散。与纯净的生物聚合物相比,纳米复合材料显示出优异的刚度,强度,韧性和玻璃化转变温度,而显示出降低的吸水率以及氧气和水蒸气的渗透性,这与通过氢键相互作用获得的强的基质-纳米填料界面粘合力有关。在最佳的ZnO浓度为4.0 wt%时,拉伸强度,杨氏模量和储能模量显示出最大值,与最高结晶度和最佳阻隔性能相吻合。 PHBV / ZnO膜对人病原菌具有抗菌活性,对大肠杆菌的作用强于对金黄色葡萄球菌的作用。随着纳米颗粒含量的增加,纳米复合物在非极性和极性模拟物中的总体迁移水平下降,并且远低于当前食品包装材料标准所要求的极限。这些具有抗菌功能的可持续性纳米材料非常有望用作饮料和食品的容器以及餐具或外包装薄膜等一次性应用。

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