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Rebar Graphene

机译:钢筋石墨烯

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As the cylindrical sp~2-bonded carbon allotrope, carbon nanotubes (CNTs) have been widely used to reinforce bulk materials such as polymers, ceramics, and metals. However, both the concept demonstration and the fundamental understanding on how 1D CNTs reinforce atomically thin 2D layered materials, such as graphene, are still absent. Here, we demonstrate the successful synthesis of CNTtoughened graphene by simply annealing functionalized CNTs on Cu foils without needing to introduce extraneous carbon sources. The CNTs act as reinforcing bar (rebar), toughening the graphene through both π-π stacking domains and covalent bonding where the CNTs partially unzip and form a seamless 2D conjoined hybrid as revealed by aberration-corrected scanning transmission electron microscopy analysis. This is termed rebar graphene. Rebar graphene can be free-standing on water and transferred onto target substrateswithout needing a polymer-coating due to the rebar effects of the CNTs. The utility of rebar graphene sheets as flexible all-carbon transparent electrodes is demonstrated. The in-plane marriage of 1D nanotubes and 2D layered materials might herald an electrical and mechanical union that extends beyond carbon chemistry.
机译:作为圆柱形的sp_2键合碳同素异形体,碳纳米管(CNT)已广泛用于增强大块材料,例如聚合物,陶瓷和金属。然而,关于一维碳纳米管如何增强原子薄的二维层状材料(例如石墨烯)的概念论证和基本理解仍然缺乏。在这里,我们证明了通过简单地在铜箔上退火官能化的CNT而无需引入多余的碳源,即可成功合成CNT增韧石墨烯。碳纳米管充当增强棒(钢筋),通过π-π堆叠域和共价键使石墨烯增韧,其中碳纳米管部分解压缩并形成无缝的2D混合杂化物,如像差校正的扫描透射电子显微镜分析所揭示。这被称为钢筋石墨烯。由于碳纳米管的钢筋效应,钢筋石墨烯可以在水中自由放置并转移到目标基材上,而无需进行聚合物涂层。演示了钢筋石墨烯片作为柔性全碳透明电极的实用性。一维纳米管和二维层状材料的面内结合可能预示着一种电气和机械结合,其范围已超越碳化学。

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