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Mapping the transition from catalyst-pool to bamboo-like growth-mechanism in vertically-aligned free-standing films of carbon nanotubes filled with Fe3C: The key role of water

机译:在填充Fe3C的碳纳米管的垂直排列的自立式薄膜中,从催化剂池到竹样生长机理的过渡图:水的关键作用

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The control of carbon nanotube growth has challenged researchers for more than a decade due to the complex parameters-control necessary in the commonly used CVD approaches. Here we show that a direct transition from the catalyst-pool growth mechanism characterized by graphene-caps in the direction of growth to a bamboo-shaped mechanism characterized by the repetition of periodic elongated graphitic compartments is present when controlled quantities of water are added to ferrocene/dichlorobenzene. Our results suggest that water-addition allows enhancing the level of stress accumulated under the graphitic nanotubes-cap.
机译:由于常用的CVD方法必须进行复杂的参数控制,因此碳纳米管生长的控制已对研究人员提出了十多年的挑战。在这里,我们表明,当向二茂铁中添加受控量的水时,存在从以石墨烯帽为特征的催化剂池生长机制向生长方向的直接转变为以周期性伸长的石墨隔室的重复为特征的竹形机制的直接过渡/二氯苯。我们的结果表明,加水可以增强石墨纳米管帽下积累的应力水平。

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