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Facile preparation of graphene nanoribbon filled silicone rubber nanocomposite with improved thermal and mechanical properties

机译:简便制备具有改善的热和机械性能的石墨烯纳米带填充的硅橡胶纳米复合材料

摘要

In the present study, graphene nanoribbon was prepared through unzipping the multi walled carbon nanotubes, and its reinforcing effect as a filler to the silicone rubber was further investigated. The results showed that carbon nanotubes could be unzipped to graphene nanoribbon using strong oxidants like potassium permanganate and sulfuric acid. The prepared graphene nanoribbon could homogeneously disperse within silicone rubber matrix using a simple solution mixing approach. It was also found from the thermogravimetric analysis curves that the thermal stability of the graphene nanoribbon filled silicone rubber nanocomposites improved compared to the pristine silicone rubber. Besides, with the incorporation of the nanofiller, the mechanical properties of the resulting nanocomposites were significantly enhanced, in which both the tensile stress and Young's modulus increased by 67% and 93% respectively when the mass content of the graphene nanoribbon was 2.0 wt%. Thus it could be expected that graphene nanoribbon had large potentials to be applied as the reinforcing filler to fabricate polymers with increased the thermal and mechanical properties.
机译:在本研究中,通过解压缩多壁碳纳米管制备石墨烯纳米带,并进一步研究了其作为填充剂对硅橡胶的增强作用。结果表明,可使用强氧化剂如高锰酸钾和硫酸将碳纳米管解压缩为石墨烯纳米带。制备的石墨烯纳米带可以使用简单的溶液混合方法均匀地分散在硅橡胶基质中。从热重分析曲线还发现,与原始硅橡胶相比,石墨烯纳米带填充的硅橡胶纳米复合材料的热稳定性得到改善。此外,通过掺入纳米填料,显着提高了所得纳米复合材料的机械性能,其中当石墨烯纳米带的质量含量为2.0重量%时,拉伸应力和杨氏模量分别增加了67%和93%。因此,可以预期的是,石墨烯纳米带具有很大的潜力,可以用作增强填料以制造具有提高的热性能和机械性能的聚合物。

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