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Dynamics of the radial deformation recovery process of single-wall carbon nanotubes

机译:单壁碳纳米管径向变形恢复过程的动态

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Carbon nanotubes, and more specifically single walled carbon nanotubes (SWNTs), possess unusual properties which are valuable for nanotechnology and other fields of materials science and technology, owing to their extraordinary thermal, electrical, and in particular mechanical properties. Most of the desirable mechanical properties, including a high tensile strength, result from the covalent sp(2)-bonds formed between individual carbon atoms. However, SWNTs are much softer in their radial compared to their axial direction, which results in a reversible elastic deformation of the cross section when applying sufficiently strong hydrostatic pressures. This article provides further evidence, via time dependent Raman spectroscopy, that a stable deformed state exists as a result of van-der-Waals-interactions within individual tubes and specifically that these tubes can fully recover from this deformed state on surprisingly long time scales on the order of tens of minutes. In order to distinguish inter-tube from intra-tube effects, all experiments have been performed with densely packed, vertically aligned, free-standing SWNT arrays in comparison to individual, de-bundled SWNTs. These insights lead to far reaching conclusions regarding the mechanical properties and binding energies of the found stable state and, via a detailed analysis of the D-mode, enable the distinction of fully reversible deformations from defect induced states. (c) 2018 Elsevier Ltd. All rights reserved.
机译:碳纳米管和更具体地单独的单壁碳纳米管(SWNT)具有不寻常的性质,这对于纳米技术和其他材料科学和技术领域有价值,这是由于其非凡的热,电气,特别是机械性能。大多数所需的机械性能,包括高抗拉强度,由在各个碳原子之间形成的共价SP(2)粘剂产生。然而,与轴向相比,SWNT在其径向上较软,这导致跨越施加足够强烈的静水压力时横截面的可逆弹性变形。本文提供了进一步的证据,通过时间依赖的拉曼光谱,即在单个管内的范德华 - 瓦纳相互作用的结果中存在稳定的变形状态,具体而言,这些管可以在令人惊讶的是,这些管可以完全从这种变形状态恢复十几分钟的顺序。为了与管内效应区分管间,所有实验均使用密集包装,垂直对准,与个体的捆扎SWNT相比进行独立的独立的SWNT阵列。这些见解导致关于发现稳定状态的机械性能和结合能的结论,并且通过对D模式的详细分析,能够区分缺陷诱导状态的完全可逆变形。 (c)2018年elestvier有限公司保留所有权利。

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