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Enhancing graphene reinforcing potential in composites by hydrogen passivation induced dispersion

机译:氢钝化诱导分散增强复合材料中石墨烯的增强电势

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摘要

To take full advantages of the structural uniqueness and exceptional properties of graphene as reinforcement in composites, harvesting well-dispersed graphene is essential. On the other hand, it is challenging to achieve simultaneously high stiffness, strength and toughness in engineered materials because of the trade-off relations between these properties. Here we demonstrate that the graphene reinforcing potential can be significantly enhanced through the excellent dispersion of graphene sheets in the matrix material and the strong graphene-matrix bonding by the coupled hydrogen passivation and ultrasonication technique. The fabricated graphene/epoxy composites exhibit simultaneously remarkable increase in elastic modulus, fracture strength, and fracture energy. We found that the inlet hydrogen atoms in the hydrogen passivation serve as a source of the second atoms to terminate the C dangling bonds and form more stable C-H bonds, separating graphene flakes and promoting the binding with the matrix material.
机译:为了充分利用石墨烯的结构独特性和出色的性能作为复合材料中的增强材料,必须收获分散良好的石墨烯。另一方面,在工程材料中同时获得高刚度,强度和韧性是一项挑战,因为这些特性之间存在折衷关系。在这里,我们证明了通过石墨烯片在基体材料中的出色分散以及通过氢钝化和超声耦合技术实现的牢固的石墨烯-基体键合,可以显着提高石墨烯的增强潜力。所制备的石墨烯/环氧树脂复合材料同时显示出弹性模量,断裂强度和断裂能的显着提高。我们发现氢钝化中的入口氢原子充当第二个原子的来源,以终止C的悬空键并形成更稳定的C-H键,从而分离石墨烯薄片并促进与基体材料的结合。

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