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The Great Reduction of a Carbon Nanotube's Mechanical Performance by a Few Topological Defects

机译:几种拓扑缺陷大大降低了碳纳米管的机械性能

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It is widely believed that carbon nanotubes (CNTs) can be employed to produce superstrong materials with tensile strengths of up to 50 GPa. Numerous efforts have, however, led to CNT fibers with maximum strengths of only a few GPa. Here we report that, due to different mechanical responses to the tensile loading of disclination topological defects in the CNT walls, a few of these topological defects are able to greatly decrease the strength of the CNTs, by up to an order of magnitude. This study reveals that even nearly perfect CNTs cannot be used to build exceptionally strong materials, and therefore synthesizing flawless CNTs is essential for utilizing the ideal strength of CNTs.
机译:普遍认为,碳纳米管(CNT)可用于生产拉伸强度高达50 GPa的超强材料。然而,许多努力导致最大强度仅几GPa的CNT纤维。在这里我们报告,由于对碳纳米管壁错位拓扑缺陷的拉伸载荷有不同的机械响应,这些拓扑缺陷中的一些能够使CNT的强度最大降低一个数量级。这项研究表明,即使是近乎完美的CNT也不能用于构建异常坚固的材料,因此合成无瑕的CNT对于利用CNT的理想强度至关重要。

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