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Bias-enhanced growth of carbon nanotubes directly on metallic wires

机译:直接在金属线上偏置增强碳纳米管的生长

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Carbon nanotubes (CNTs) have been grown directly on metallic wires by a powerful but simple technique, which we call cold-plasma chemical vapour deposition. The growth occurs on an Fe catalyst supported by kanthal wires while heating under a hydrocarbon precursor gas and plasma created by a bias. A possible application for such nanotubes on metallic wires is in luminescent tubes. To realize such devices, it is important to grow the nanotubes with controlled density, length, and alignment. In the present investigation we have made a systematic scanning electron microscopy study of these nanotubes. The growth rate for the CNTs is found to be very high. Just a few seconds is sufficient for covering a large surface area. Increased growth time leads to enhanced site density of the nanotubes. The diameter of the nanotubes increases with the growth temperature. CNTs are not always straight; spiral behaviour is quite often observed. We observed, probably for the first time, increase in the spiral periodicity of the nanotubes with increasing temperature. On applying a high bias to the wire (creating plasma), the number of spiral structures was reduced; instead, mostly aligned and self-supporting nanotubes were formed, with lengths as high as 45 mu m.
机译:碳纳米管(CNTs)已通过一种功能强大但简单的技术直接在金属线上生长,我们称之为冷等离子体化学气相沉积。该生长在由坎塔尔线支撑的Fe催化剂上发生,同时在烃前驱体气体和由偏压产生的等离子体下加热。这种纳米管在金属线上的可能应用是在发光管中。为了实现这样的装置,重要的是以受控的密度,长度和取向生长纳米管。在本研究中,我们对这些纳米管进行了系统的扫描电子显微镜研究。发现CNT的生长速率非常高。仅仅几秒钟就足以覆盖很大的表面积。生长时间增加导致纳米管的位点密度增加。纳米管的直径随着生长温度而增加。碳纳米管并不总是直的。螺旋行为经常被观察到。我们可能第一次观察到纳米管的螺旋周期性随温度升高而增加。在导线上施加高偏压(产生等离子体)后,螺旋结构的数量减少了;取而代之的是,形成了大部分排列并自支撑的纳米管,其长度高达45微米。

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