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The preparation of hybrid films of carbon nanotubes and nano-graphite/graphene with excellent mechanical and electrical properties

机译:碳纳米管与纳米石墨/石墨烯杂化薄膜的制备,具有优异的机械和电学性能

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摘要

We have prepared mixed dispersions of singlewalled nanotubes and nano-graphite/graphene in the solvent N-methyl pyrrolidone. This allows the deposition of hybrid films by vacuum filtration. Scanning electron microscopy shows the components to be well mixed with little sign of phase separation. Although dominated by nano-graphite, Raman spectroscopy shows the presence of some graphene flakes with <5 layers. Mechanical measurements show the hybrids to be stronger and stiffer than nanotube or graphene-only films, reaching strengths and stiffnesses of 38 MPa and 4.8 GPa, respectively for the sample with 20 wt graphene. In addition the hybrid films were more electrically conductive than the nano-tube-only or graphitic films reaching a DC conductivity of 2 x 10~4 S/m for the 70 wt nano-graphite/graphene sample.
机译:我们制备了单壁纳米管和纳米石墨/石墨烯在溶剂N-甲基吡咯烷酮中的混合分散体。这允许通过真空过滤沉积混合薄膜。扫描电子显微镜显示组分混合良好,几乎没有相分离的迹象。虽然以纳米石墨为主,但拉曼光谱显示存在一些具有<5层的石墨烯薄片。机械测量表明,杂化物比纳米管或仅石墨烯薄膜更坚固、更坚硬,对于含有 20 wt% 石墨烯的样品,强度和刚度分别达到 38 MPa 和 4.8 GPa。此外,对于70 wt%的纳米石墨/石墨烯样品,杂化薄膜的导电性比仅纳米管薄膜或石墨薄膜的导电性更强,直流电导率为2 x 10~4 S/m。

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