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具有优异氧气阻隔性能的透明普鲁兰多糖/云母纳米复合涂层

Transparent Pullulan/Mica Nanocomposite Coatings with Outstanding Oxygen Barrier Properties.

作者信息

Uysal Unalan Ilke, Boyacı Derya, Trabattoni Silvia, Tavazzi Silvia, Farris Stefano

机构信息

DeFENS, Department of Food, Environmental and Nutritional Sciences-Packaging Division, University of Milan, via Celoria, 2, 20133 Milan, Italy.

Department of Food Engineering, Faculty of Engineering, İzmir University of Economics, İzmir 35330, Turkey.

出版信息

Nanomaterials (Basel). 2017 Sep 19;7(9):281. doi: 10.3390/nano7090281.

Abstract

This study presents a new bionanocomposite coating on poly(ethylene terephthalate) (PET) made of pullulan and synthetic mica. Mica nanolayers have a very high aspect ratio (α), at levels much greater than that of conventional exfoliated clay layers (e.g., montmorillonite). A very small amount of mica (0.02 wt %, which is ϕ ≈ 0.00008) in pullulan coatings dramatically improved the oxygen barrier performance of the nanocomposite films under dry conditions, however, this performance was partly lost as the environmental relative humidity (RH) increased. This outcome was explained in terms of the perturbation of the spatial ordering of mica sheets within the main pullulan phase, because of RH fluctuations. This was confirmed by modelling of the experimental oxygen transmission rate () data according to Cussler's model. The presence of the synthetic nanobuilding block (NBB) led to a decrease in both static and kinetic coefficients of friction, compared with neat PET (≈12% and 23%, respectively) and PET coated with unloaded pullulan (≈26% reduction in both coefficients). In spite of the presence of the filler, all of the coating formulations did not significantly impair the overall optical properties of the final material, which exhibited haze values below 3% and transmittance above 85%. The only exception to this was represented by the formulation with the highest loading of mica (1.5 wt %, which is ϕ ≈ 0.01). These findings revealed, for the first time, the potential of the NBB mica to produce nanocomposite coatings in combination with biopolymers for the generation of new functional features, such as transparent high oxygen barrier materials.

摘要

本研究展示了一种由普鲁兰多糖和合成云母制成的聚对苯二甲酸乙二酯(PET)上的新型生物纳米复合涂层。云母纳米层具有非常高的长径比(α),远高于传统的片状黏土(如蒙脱石)。在普鲁兰多糖涂层中加入极少量的云母(0.02 wt%,即ϕ≈0.00008),能显著提高纳米复合薄膜在干燥条件下的氧气阻隔性能,然而,随着环境相对湿度(RH)的增加,这种性能会部分丧失。这一结果可通过RH波动导致云母片在主要普鲁兰多糖相中空间排列的扰动来解释。根据库斯勒模型对实验氧气透过率()数据进行建模,证实了这一点。与纯PET(静态和动摩擦系数分别约降低12%和23%)以及涂有无负载普鲁兰多糖的PET(两种系数均降低约26%)相比,合成纳米结构单元(NBB)的存在导致静摩擦系数和动摩擦系数均降低。尽管存在填料,但所有涂层配方均未显著损害最终材料的整体光学性能,其雾度值低于3%,透光率高于85%。唯一的例外是云母负载量最高的配方(1.5 wt%,即ϕ≈0.01)。这些发现首次揭示了NBB云母与生物聚合物结合制备纳米复合涂层以产生新功能特性(如透明高氧气阻隔材料)的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/649f/5618392/6f72904d347e/nanomaterials-07-00281-g001.jpg

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