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Growth of carbon nanotube field emitters on single strand carbon fiber: A linear electron source

机译:单链碳纤维上碳纳米管场发射器的生长:线性电子源

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The multi-stage effect has been revisited through growing carbon nanotube field emitters on single strand carbon fiber with a thickness of 11 μm. A prepared linear electron source exhibits a turn-on field as low as 0.4 V μm~(-1) and an extremely high field enhancement factor of 19 300, when compared with those results from reference nanotube emitters grown on flat silicone wafer; 3.0 V μm~(-1) and 2500, respectively. In addition, we introduce a novel method to grow nanotubes uniformly around the circumference of carbon fibers by using direct resistive heating on the continuously feeding carbon threads. These results open up not only a new path for synthesizing nanocomposites, but also offer an excellent linear electron source for special applications such as backlight units for liquid crystal displays and multi-array x-ray sources.
机译:通过在单链碳纤维上生长厚度为11μm的碳纳米管场发射器,可以重新审视多阶段效应。与在平板有机硅晶片上生长的参考纳米管发射器的结果相比,制备的线性电子源具有低至0.4 Vμm〜(-1)的导通场和19 300的极高场增强因子; 3.0 Vμm〜(-1)和2500。另外,我们介绍了一种通过在连续喂入的碳丝上使用直接电阻加热在碳纤维周围均匀生长纳米管的新方法。这些结果不仅为合成纳米复合材料开辟了一条新途径,而且还为特殊应用提供了出色的线性电子源,例如液晶显示器的背光单元和多阵列X射线源。

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