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High performance graphene embedded rubber composites

机译:高性能石墨烯包埋橡胶复合材料

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Nano-fillers have provided a big advantage for enhancing the performance of rubber composites through leading the synergy effects in the physical and chemical properties. However, despite various approaches having been explored, the process to make a homogenous and stable dispersion of nano-filler in the rubber matrix remains a major challenge in this field. Herein, we propose a simple and effective route for synthesizing nanocomposites of rubber with homogenous and stable dispersed low defect graphene flakes (l-GFs), which are prepared using l-GFs/SBR composites via aqueous-phase mixing of exfoliated l-GFs with SBR latex. The l-GFs embedded SBR matrix shows a remarkable improvement in the modulus and tensile strength even at the low loading rate, which is ascribed to the efficient dispersion of the l-GFs enhancing interfacial interaction with the rubber matrix. The integration of l-GFs into the SBR matrix significantly improves the thermal and electrical conductivities, as well as the gas barrier property of the rubber composites. This method is water-mediated, green and scalable, showing great potential for the production of various l-GFs-based rubber composites at an industrial level.
机译:纳米填料通过在物理和化学性质上发挥协同作用,为增强橡胶复合材料的性能提供了巨大优势。然而,尽管已经探索了各种方法,但是使纳米填料均匀且稳定地分散在橡胶基质中的方法仍然是该领域中的主要挑战。本文中,我们提出了一种简单有效的方法,用于合成具有均匀且稳定的低缺陷石墨烯薄片(l-GFs)的橡胶纳米复合材料,这些薄片是使用l-GFs / SBR复合材料通过将脱落的l-GFs与SBR乳胶。嵌入了l-GFs的SBR基体即使在低加载速率下也显示出模量和拉伸强度的显着改善,这归因于l-GFs的有效分散,增强了与橡胶基体的界面相互作用。将l-GFs整合到SBR基体中可显着改善橡胶复合材料的导热性和导电性以及阻气性。该方法是水介导的,绿色的和可扩展的,显示出在工业水平上生产各种基于l-GFs的橡胶复合材料的巨大潜力。

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