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Preparation and characterization of poly(propylene carbonate)/exfoliated graphite nanocomposite films with improved thermal stability, mechanical properties and barrier properties

机译:具有改善的热稳定性,机械性能和阻隔性能的聚碳酸亚丙酯/片状石墨纳米复合薄膜的制备和表征

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摘要

Relatively high aspect ratio exfoliated graphite (EFG) particles with an average size of 7.4 μm and a nanometer sized thickness of 30-50 nm were successfully prepared by thermal treatment at 1050 °C and subsequent ultrasonication for application as a filler to improve the physical properties of eco-friendly poly(propylene carbonate) (PPC). A series of poiy(propylene carbonate)/exfoliated graphite (PPC/EFG) nanocomposite films with different EFG contents were prepared via a solution blending method. The physical properties were strongly dependent upon the chemical and morphological structures originating from the differences in EFG composition. The morphological structures, thermal properties, mechanical properties and barrier properties of the nanocomposite films were investigated as a function of the EFG content. While all of the PPC/EFG nanocomposite films exhibited good dispersion of EFG to some extent, Fourier transform infrared and SEM results revealed that solution blending did not lead to strong interactions between PPC and EFG. As a result, poor dispersion occurred in composite films with a high EFG content. By loading EFG particles, the oxygen permeabilities, moisture permeabilities and water uptake at equilibrium decreased as the EFG content increased. Compared with pure PPC, PPC/EFG nanocomposite films have enhanced molecular ordering. Specifically, the 2% PPC/EFG composite film shows greater molecular ordering than the other composite films, which results in the highest mechanical strength. In future work, the compatibility and dispersion of the PPC matrix polymer and EFG filler particles should be increased by modifying the EFG surface or introducing additives.
机译:通过在1050°C的温度下热处理并随后超声处理以用作填料以改善物理性能,成功制备了平均粒径为7.4μm,纳米尺寸为30-50 nm的相对高长宽比的脱落石墨(EFG)颗粒环保型聚碳酸亚丙酯(PPC)的制造。通过溶液共混法制备了一系列不同EFG含量的聚碳酸亚丙酯/片状石墨(PPC / EFG)纳米复合薄膜。物理性质在很大程度上取决于源自EFG组成差异的化学和形态结构。研究了纳米复合薄膜的形貌结构,热性能,机械性能和阻隔性能与EFG含量的关系。尽管所有的PPC / EFG纳米复合膜在一定程度上都表现出良好的EFG分散性,但傅立叶红外光谱和SEM结果表明,溶液共混不会导致PPC与EFG之间的强烈相互作用。结果,在具有高EFG含量的复合膜中发生差的分散。通过加载EFG颗粒,随着EFG含量的增加,平衡时的氧气渗透率,水分渗透率和吸水率降低。与纯PPC相比,PPC / EFG纳米复合膜具有增强的分子有序性。具体而言,2%PPC / EFG复合膜比其他复合膜表现出更大的分子有序性,从而获得最高的机械强度。在未来的工作中,应通过改性EFG表面或引入添加剂来提高PPC基体聚合物和EFG填料颗粒的相容性和分散性。

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