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Functionalized low defect graphene nanoribbons and polyurethane composite film for improved gas barrier and mechanical performances

机译:功能化的低缺陷石墨烯纳米带和聚氨酯复合膜,可改善阻气性和机械性能

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摘要

A thermoplastic polyurethane (TPU) composite film containing hexadecyl-functionalized low-defect graphene nanoribbons (HD-GNRs) was produced by solution casting. The HD-GNRs were well distributed within the polyurethane matrix, leading to phase separation of the TPU. Nitrogen gas effective diffusivity of TPU was decreased by 3 orders of magnitude with only 0.5 wt % HD-GNRs. The incorporation of HD-GNRs also improved the mechanical properties of the composite films, as predicted by the phase separation and indicated by tensile tests and dynamic mechanical analyses. The improved properties of the composite film could lead to potential applications in food packaging and lightweight mobile gas storage containers.
机译:通过溶液流延制备包含十六烷基官能化的低缺陷石墨烯纳米带(HD-GNR)的热塑性聚氨酯(TPU)复合膜。 HD-GNR在聚氨酯基质中分布良好,导致TPU相分离。仅使用0.5 wt%的HD-GNR,TPU的氮气有效扩散率降低了3个数量级。 HD-GNR的加入还改善了复合膜的机械性能,如通过相分离预测的,通过拉伸试验和动态力学分析所表明的。复合薄膜的改进性能可能导致在食品包装和轻型移动式气体存储容器中的潜在应用。

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