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Graphene oxide bionanocomposite coatings with high oxygen barrier properties

机译:具有高氧气阻隔性能的氧化石墨烯生物纳米复合涂料

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摘要

In this work, we present the development of bionanocomposite coatings on poly(ethylene terephthalate) (PET) with outstanding oxygen barrier properties. Pullulan and graphene oxide (GO) were used as main polymer phase and nanobuilding block (NBB), respectively. The oxygen barrier performance was investigated at different filler volume fractions (φ) and as a function of different relative humidity (RH) values. Noticeably, the impermeable nature of GO was reflected under dry conditions, in which an oxygen transmission rate (OTR, mL m-2 24 h-1) value below the detection limit of the instrument (0.01 mL m-2 24 h-1) was recorded, even for ' as low as 0.0004. A dramatic increase of the OTR values occurred in humid conditions, such that the barrier performance was totally lost at 90% RH (the OTR of coated PET films was equal to the OTR of bare PET films). Modelling of the experimental OTR data by Cussler’s model suggested that the spatial ordering of GO sheets within the main pullulan phase was perturbed because of RH fluctuations. In spite of the presence of the filler, all the formulations allowed the obtainment of final materials with haze values below 3%, the only exception being the formulation with the highest loading of GO (φ 0.03). The mechanisms underlying the experimental observations are discussed.
机译:在这项工作中,我们提出了在聚对苯二甲酸乙二醇酯(PET)上具有出色的阻氧性能的生物纳米复合涂料的开发。支链淀粉和氧化石墨烯(GO)分别用作主要的聚合物相和纳米结构单元(NBB)。在不同的填料体积分数(φ)以及不同的相对湿度(RH)值的函数下研究了阻氧性能。值得注意的是,GO的不渗透性反映在干燥条件下,其中氧气透过率(OTR,mL m-2 24 h-1)值低于仪器的检测极限(0.01 mL m-2 24 h-1)记录下来,即使“低至0.0004”。 OTR值在潮湿条件下急剧增加,因此在90%RH时,阻隔性能完全丧失(涂层PET膜的OTR等于裸PET膜的OTR)。用库斯勒模型对实验性OTR数据进行建模表明,由于相对湿度的波动,主支链淀粉相内GO片的空间顺序受到了干扰。尽管存在填料,但所有配方均允许获得雾度值低于3%的最终材料,唯一的例外是GO含量最高(φ0.03)的配方。讨论了实验观察的基础机制。

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