首页> 外文会议>Proceedings of the 2011 6th IEEE International Conference on Nano/Micro Engineered and Molecular Systems >Microscale study of electrical characteristics of epoxy-multiwall carbon nanotube nanocomposites
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Microscale study of electrical characteristics of epoxy-multiwall carbon nanotube nanocomposites

机译:环氧-多壁碳纳米管纳米复合材料电学特性的微观研究

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Epoxy-multiwall carbon nanotube nanocomposite thin films were prepared by spin casting. High power air plasma was used to preferentially etch a coating of epoxy and expose the underlying carbon nanotube network. Scanning electron microscopy (SEM) examination revealed well distributed and spatially connected carbon nanotube network in both the longitudinal direction (plasma etched surface) and transverse direction (through-thickness fractured surface). Topographical examination and conductive mode imaging of the plasma etched surface using atomic force microscope (AFM) in the contact mode enabled direct imaging of topography and current maps of the emdedded carbon nanotube network. Bundles consisting of at least three single carbon nanotubes form part of the percolating network observed under high resolution current maps. Predominantly non-ohmic response is obtained in this study; behaviour attributed to less than effective polymer material removal when using air plasma etching.
机译:通过旋铸法制备了环氧-多壁碳纳米管纳米复合薄膜。高功率空气等离子体被用于优先蚀刻环氧树脂涂层并暴露出下面的碳纳米管网络。扫描电子显微镜(SEM)检查显示在纵向(等离子体蚀刻的表面)和横向(贯穿厚度的断裂表面)上分布良好且空间连接的碳纳米管网络。在接触模式下使用原子力显微镜(AFM)对等离子蚀刻表面进行形貌检查和导电模式成像,可以对嵌入式碳纳米管网络的形貌和电流图进行直接成像。由至少三个单碳纳米管组成的束形成了在高分辨率电流图下观察到的渗滤网络的一部分。在这项研究中主要获得了非欧姆响应。这种现象归因于使用空气等离子体蚀刻时聚合物材料的去除效果不佳。

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