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Enormous shrinkage of carbon nanotubes by supersonic stress and low-acceleration electron beam irradiation

机译:超声应力和低加速电子束辐照使碳纳米管大幅收缩

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摘要

The authors demonstrated a new method for inducing enormous shrinkage in single-walled carbon nanotube bundles by applying low energy electron beam irradiation along with supersonic vibration, and a maximum shrinkage rate of −100% cm2/C was obtained under electron acceleration of 1 keV. The characteristic feature of the shrunken single-walled carbon nanotubes was a wavy deformation that affected the entire bundle. The authors believe that a uniaxial stress induced by the supersonic vibration broke the equilibrium of the internal stress and allowed the uniform accumulation of defects under low energy electron beam excitation. The wavy deformation of the single-walled carbon nanotubes resulted in the enormous shrinkage of the bundle.
机译:作者展示了一种通过施加低能电子束辐射和超声振动来在单壁碳纳米管束中引起巨大收缩的新方法,在1 keV的电子加速度下,最大收缩率为-100%cm2 / C。收缩的单壁碳纳米管的特征是波浪形变形,影响了整个束。作者认为,由超声波振动引起的单轴应力破坏了内部应力的平衡,并在低能电子束激发下允许缺陷的均匀积累。单壁碳纳米管的波浪形变形导致束的巨大收缩。

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