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Continuous production of single walled carbon nanotubes by means of a swirled fluid chemical vapour deposition reactor

机译:借助旋流化学气相沉积反应器连续生产单壁碳纳米管

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摘要

Research into Carbon Nanotubes and their applications is fast becoming an extremely popular topic and any means to greatly improve the synthesis process has a huge marketability. An investigation was undergone to ascertain whether a Swirled-Fluid Chemical Vapour Deposition reactor could be used to continuously produce single-walled carbon nanotubes (SWCNT) in a feasible manner and, although the process proved successful, the mechanism of the SWCNT synthesis has not been full understood. It was found that the use of a 10% Hydrogen to Argon mixture being passed through a 6.5mol% ferrocene-Xylene solution at 900oC resulted in the presence of Single Walled Carbon Nanotubes attached to Helical Carbon Nanotubes in the product stream exiting the hydro cyclones.udInvestigation into the merits provided by the helical structure illustrated the greatly increased likeliness for helical tubes to be lifted from the reactor by the carrier gas giving rise to positive speculation of their possible use in vertical CVD reactors in the future. The increased drag and agglomeration provided by the helical shape provide a possible means by which grown nanotubes can be lifted from a vertical reactor in the future when more control over the products has been achieved. To its disadvantage contrarily, it was also found that the Swirled-Fluid Chemical Vapour Deposition reactor does require further separation of its products as, at present, produced samples still contain large amounts of unwanted material.
机译:对碳纳米管及其应用的研究正迅速成为一个非常受欢迎的话题,任何能够大大改善合成工艺的方法都具有巨大的市场价值。进行了研究以确定旋流化学气相沉积反应器是否可以以可行的方式连续生产单壁碳纳米管(SWCNT),尽管该过程被证明是成功的,但SWCNT的合成机理尚未得到证实。完全理解。发现在900oC下使用10%的氢气与氩气的混合物通过6.5mol%的二茂铁-二甲苯溶液会导致在离开水力旋流器的产物流中存在与螺旋碳纳米管相连的单壁碳纳米管。对螺旋结构的优点的研究表明,载气将螺旋管从反应器中提起的可能性大大增加,这引起人们对其在未来垂直CVD反应器中可能使用的积极猜测。由螺旋形状提供的增加的阻力和附聚提供了一种可能的手段,当已经实现对产物的更多控制时,通过该手段可以将生长的纳米管从将来的垂直反应器中提起。相反地​​,其不利的是,还发现旋流化学气相沉积反应器确实需要进一步分离其产物,因为目前生产的样品仍然包含大量不需要的物质。

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    Bathgate Graham;

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  • 年度 2012
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