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Dependence of Young's modulus of vertically aligned carbon nanotubes on their aspect ratio

机译:垂直对准碳纳米管对垂直对准碳纳米管的依赖性对其纵横比的依赖性

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The experimental studies of thedependence of Young's modulus of vertically aligned carbon nanotubes (CNTs) on their aspect ratio were carried out. It was shown that the Young's modulus of the individual CNTs increased from 1.63 to 1.83 TPa with an increase in their aspect ratio from 8 to 15.8. This dependence is probably due to the fact that the relative number of the structure defects in the CNT decreases with increasing its aspect ratio. The Young's modulus of the CNT bundles also increased with the growth of the aspect ratio of CNTs. However, the calculated values of the Young's modulus of the CNT bundles with a large aspect ratio were smaller than ones of the individual CNTs with a smaller aspect ratio. It is due to the fact that CNTs that form the bundles are in strained state initially. A smaller strain is required to form a given deformation in CNT bundle than that of individual nanotube. The obtained results can be used to develop and create nanoelectronics devices based on vertically aligned CNTs, in particular adhesion coatings and nonvolatile memory elements.
机译:进行了垂直对准碳纳米管(CNT)对其纵横比的杨氏模量的实验研究。结果表明,个体CNT的杨氏模量从1.63增加到1.83 TPA,其纵横比的增加率为8至15.8。这种依赖可能是因为CNT中结构缺陷的相对数量随着其纵横比而降低而降低。 CNT束的杨氏模量也随着CNT的纵横比的生长而增加。然而,具有大宽高比的CNT束的杨氏模量的计算值小于具有较小纵横比的单个CNT。它是由于形成束的CNT最初处于紧张状态。需要较小的应变来在CNT束中形成比单个纳米管的给定变形。所得结果可用于基于垂直对齐的CNT,特别是粘附涂层和非易失性存储元件来开发和产生纳米电子器件。

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