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Effect of silane functionalized graphene prepared by a supercritical carbon dioxide process on the barrier properties of polyethylene terephthalate composite films

机译:超临界二氧化碳法制备的硅烷官能化石墨烯对聚对苯二甲酸乙二醇酯复合薄膜阻隔性能的影响

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In this work, a simple and eco-friendly strategy to modify graphene nanoplatelets (GNs) with different silane coupling agents using a supercritical carbon dioxide (Sc-CO _(2) ) process has been presented, and effect of the modified GNs on the oxygen transmission rate (OTR) and water vapor transmission rate (WVTR) of GN/PET composite films was studied. FT-IR, SEM, EDX and TG results indicated that Sc-CO _(2) process was an effective strategy to modify GNs with silane coupling agents. Addition of the modified GNs into PET matrix could greatly decrease the OTR and WVTR values of the GNs/PET composite films, and the WVTR of GNs560/PET composite film and OTR of GNs550/PET composite film were respectively decreased about 90.08% and 58.04%, as compared to those of GNs/PET composite film. It is found that the gas barrier property of GN/PET composites was attributed to not only the tortuous path effect caused by GNs themselves and the interfacial interaction, but also the affinity of binding bonds between GNs and the polymer to the gas molecules. It is believed that this work provided a strategy to design and prepare CN/polymer composites with high barrier properties.
机译:在这项工作中,提出了一种简单且环保的策略,即使用超临界二氧化碳(Sc-CO _(2))工艺用不同的硅烷偶联剂改性石墨烯纳米片(GNs),并且改性后的GNs对纳米石墨烯的影响研究了GN / PET复合薄膜的氧透过率(OTR)和水蒸气透过率(WVTR)。 FT-IR,SEM,EDX和TG结果表明,Sc-CO_(2)工艺是用硅烷偶联剂修饰GNs的有效策略。将改性的GNs添加到PET基体中可大大降低GNs / PET复合膜的OTR和WVTR值,GNs560 / PET复合膜的WVTR和GNs550 / PET复合膜的OTR分别降低约90.08%和58.04% ,与GNs / PET复合膜相比。发现GN / PET复合材料的阻气性不仅归因于GNs自身引起的曲折路径效应和界面相互作用,还归因于GNs与聚合物之间的结合键与气体分子的亲和力。相信这项工作提供了设计和制备具有高阻隔性能的CN /聚合物复合材料的策略。

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