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Empirical Correlation of the Morphology of Coiled Carbon Nanotubes with Their Response to Axial Compression

机译:碳纳米管的螺旋形与轴向压缩响应的经验相关性

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The mechanical response of thirteen different helical multi- walled carbon nanocoils to axial compression is reported. Each nanocoil was attached to the apex of a cantilever probe tip; its dimensions and orientation relative to the tip apex were determined with scanning electron microscopy. The atomic force microscope was employed to apply a cyclic axial load on the nanocoil. Its mechanical response was determined by simultaneous collection of the thermal resonance frequency, displacement, and oscillation amplitude of the cantilever-nanorube system in real time. Depending upon compression parameters, each coil underwent budding, bending, and slip-stick motion. Characteristic features in the thermal resonance spectrum and in the force and oscillation amplitude curves for each of these responses to induced stress are presented. Following compression studies, the structure and morphology of each nanocoil were determined by transmission electron microscopy. The compression stiffness of each nanocoil was estimated from the resonant frequency of the cantilever at the point of contact with the substrate surface. From this value, the elastic modulus of the nanocoil was computed and correlated with the coiled carbon nanotubes morphology.
机译:报道了十三种不同的螺旋多层碳纳米管对轴向压缩的机械响应。每个纳米线圈都连接到悬臂式探针尖端的顶点。通过扫描电子显微镜确定其相对于尖端的尺寸和取向。使用原子力显微镜在纳米线圈上施加循环轴向载荷。它的机械响应是通过同时实时收集悬臂-纳米管系统的热共振频率,位移和振荡幅度来确定的。根据压缩参数的不同,每个线圈都会进行萌芽,弯曲和粘滑运动。给出了这些对感应应力的响应的热共振谱以及力和振荡幅度曲线的特征。在压缩研究之后,通过透射电子显微镜确定每个纳米线圈的结构和形态。根据与基板表面接触点的悬臂的共振频率,估计每个纳米线圈的压缩刚度。根据该值,计算出纳米线圈的弹性模量,并将其与卷曲的碳纳米管形态相关联。

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  • 来源
    《Journal of nanotechnology》 |2014年第2014期|616240.1-616240.12|共12页
  • 作者单位

    Georgia Institute of Technology, School of Chemistry and Biochemistry, Atlanta, GA 30332-0400, USA;

    Georgia Institute of Technology, School of Chemistry and Biochemistry, Atlanta, GA 30332-0400, USA;

    Georgia Institute of Technology, The George W. Woodruff School of Mechanical Engineering, Atlanta, GA 30332-0405, USA;

    Georgia Institute of Technology, School of Chemistry and Biochemistry, Atlanta, GA 30332-0400, USA;

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