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Transparent films based on PLA and montmorillonite with tunable oxygen barrier properties

机译:基于pLa和蒙脱石的透明薄膜具有可调节的氧气阻隔性能

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摘要

Polylactide (PLA) is viewed as a potential material to replace synthetic plastics (e.g., poly(ethylene terephthalate) (PET)) in food packaging, and there have been a number of developments in this direction. However, for PLA to be competitive in more demanding uses such as the packaging of oxygen-sensitive foods, the oxygen permeability coefficient (OP) needs to be reduced by a factor of ∼10. To achieve this, a layer-by-layer (Lbl) approach was used to assemble alternating layers of montmorillonite clay and chitosan on extruded PLA film surfaces. When 70 bilayers were applied, the OP was reduced by 99 and 96%, respectively, at 20 and 50% RH. These are, to our knowledge, the best improvements in oxygen barrier properties ever reported for a PLA/clay-based film. The process of assembling such multilayer structures was characterized using a quartz crystal microbalance with dissipation monitoring. Transmission electron microscopy revealed a well-ordered laminar structure in the deposited multilayer coatings, and light transmittance results demonstrated the high optical clarity of the coated PLA films.
机译:聚丙交酯(PLA)被视为替代食品包装中的合成塑料(例如,聚对苯二甲酸乙二酯(PET))的潜在材料,并且在此方向上已有许多发展。但是,为了使PLA在要求更高的用途(例如对氧气敏感的食品的包装)中具有竞争力,需要将氧气渗透系数(OP)降低约10倍。为了实现此目的,使用了逐层(Lbl)方法在挤出的PLA薄膜表面组装了蒙脱土和壳聚糖的交替层。当施加70个双层时,在20%和50%RH下,OP分别降低了99%和96%。据我们所知,这是PLA /粘土基薄膜有史以来对氧气阻隔性能的最佳改进。使用带有耗散监测的石英晶体微量天平来表征这种多层结构的组装过程。透射电子显微镜显示沉积的多层涂层中的层状结构井然有序,并且透光率结果表明涂覆的PLA膜具有很高的光学清晰度。

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