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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Understanding parameters affecting field emission properties of directly spinnable carbon nanotube webs
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Understanding parameters affecting field emission properties of directly spinnable carbon nanotube webs

机译:了解影响直接可纺碳纳米管网的场发射特性的参数

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The electron field emission (FE) properties of highly aligned carbon nanotube webs (CNTWs) spun directly from carbon nanotube forests are elucidated in this study. By controlling the synthesis parameters, a series of CNTWs with different structural properties are synthesized and the effect of web areal density and the length of the constituent nano-tubes on the field emission property studied. An empirical/analytical factor (Tip Factor, T) is developed which relates the structural properties of the web to their effect on the effective concentration of free nanotube ends, and hence on FE. The validity of T as a measure of tip concentration is further demonstrated by measuring the pull-off adhesive forces using an AFM-based technique. Both FE and mechanical adhesion are linearly related to T. These results suggest that in order to achieve the highest field emission or dry adhesion webs, features desired include short nanotubes, with dense and even coverage of the surface.
机译:在这项研究中阐明了直接从碳纳米管森林纺出的高度对齐的碳纳米管网(CNTW)的电子场发射(FE)特性。通过控制合成参数,合成了具有不同结构特性的一系列CNTW,研究了网面密度和组成纳米管的长度对场发射特性的影响。开发了一种经验/分析因子(Tip Factor,T),该因子将纤维网的结构特性与其对游离纳米管末端有效浓度的影响相关,并因此与有限元相关。通过使用基于AFM的技术测量剥离粘合力,可以进一步证明T作为尖端浓度测量的有效性。 FE和机械粘附力都与T线性相关。这些结果表明,为了实现最高的场发射或干燥粘附力网,所需的功能包括短纳米管,具有密集且均匀的表面覆盖。

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