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首页> 外文期刊>Nature Communications >High-strength carbon nanotube fibre-like ribbon with high ductility and high electrical conductivity
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High-strength carbon nanotube fibre-like ribbon with high ductility and high electrical conductivity

机译:高强度,高导电性的高强度碳纳米管纤维状碳带

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摘要

Macroscopic fibres made up of carbon nanotubes exhibit properties far below theoretical predictions and even much lower than those for conventional carbon fibres. Here we report improvements of mechanical and electrical properties by more than one order of magnitude by pressurized rolling. Our carbon nanotubes self-assemble to a hollow macroscopic cylinder in a tube reactor operated at high temperature and then condense in water or ethanol to form a fibre, which is continually spooled in an open-air environment. This initial fibre is densified by rolling under pressure, leading to a combination of high tensile strength (3.76–5.53?GPa), high tensile ductility (8–13%) and high electrical conductivity ((1.82–2.24) × 104?S?cm?1). Our study therefore demonstrates strategies for future performance maximization and the very considerable potential of carbon nanotube assemblies for high-end uses.
机译:由碳纳米管组成的宏观纤维的性能远远低于理论预测,甚至比常规碳纤维的性能低得多。在这里,我们报道了通过加压轧制将机械和电气性能提高了一个数量级以上。我们的碳纳米管会在高温下运行的管式反应器中自动组装成空心的宏观圆柱体,然后在水或乙醇中冷凝形成纤维,然后将纤维连续缠绕在露天环境中。初始纤维通过在压力下滚动而致密,从而获得高拉伸强度(3.76-5.53?GPa),高拉伸延展性(8-13%)和高电导率((1.82-2.24)×10 4 ?S?cm ?1 )。因此,我们的研究表明了未来性能最大化的策略以及高端用途的碳纳米管组件的巨大潜力。

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