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首页> 外文期刊>Nanotechnology >Dynamic observations of the effect of pressure and temperature conditions on the selective synthesis of carbon nanotubes - art. no. 125602
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Dynamic observations of the effect of pressure and temperature conditions on the selective synthesis of carbon nanotubes - art. no. 125602

机译:动态观察压力和温度条件对碳纳米管选择性合成的影响-艺术。没有。 125602

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In situ transmission electron microscopy studies have been carried out to determine the effect of temperature and pressure on the growth of carbon nanotubes by the Ni-catalyzed chemical vapour deposition of acetylene. The temperature range explored was 450-650 degrees C and the acetylene pressure range was 0.8-20 mTorr. Our observations show that straight, single-wall, carbon nanotubes tend to form at higher temperatures and lower pressures while bent, zigzag, multi-wall carbon nanotubes form at lower temperatures and higher pressures. These results can be understood as the result of competition between the arrival rate of carbon and the nucleation rate of carbon hexagons (which increases at high pressure and low temperature), and the annealing rate of the 5-ring and 7-ring defects that are responsible for the nanotube curvature.
机译:已经进行了原位透射电子显微镜研究,以确定温度和压力通过镍催化的乙炔的化学气相沉积对碳纳米管生长的影响。探索的温度范围是450-650摄氏度,乙炔压力范围是0.8-20毫托。我们的观察结果表明,直的,单壁的碳纳米管倾向于在较高的温度和较低的压力下形成,而弯曲的锯齿形的多壁碳纳米管则在较低的温度和较高的压力下形成。这些结果可以理解为碳的到达速率与碳六边形的成核速率(在高压和低温下会增加)之间竞争的结果,并且是5环和7环缺陷的退火速率负责纳米管的曲率。

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