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Investigation on the Formation Mechanism of Double-Layer Vertically Aligned Carbon Nanotube Arrays via Single-Step Chemical Vapour Deposition

机译:单步化学气相沉积双层垂直排列碳纳米管阵列的形成机理研究

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摘要

AbstractThe mechanism for the formation of double-layer vertically aligned carbon nanotube arrays (VACNTs) through single-step CVD growth is investigated. The evolution of the structures and defect concentration of the VACNTs are tracked by scanning electron microscopy (SEM) and Raman spectroscopy. During the growth, the catalyst particles are stayed constantly on the substrate. The precipitation of the second CNT layer happens at around 30 min as proved by SEM. During the growth of the first layer, catalyst nanoparticles are deactivated with the accumulation of amorphous carbon coatings on their surfaces, which leads to the termination of the growth of the first layer CNTs. Then, the catalyst particles are reactivated by the hydrogen in the gas flow, leading to the precipitation of the second CNT layer. The growth of the second CNT layer lifts the amorphous carbon coatings on catalyst particles and substrates. The release of mechanical energy by CNTs provides big enough energy to lift up amorphous carbon flakes on catalyst particles and substrates which finally stay at the interfaces of the two layers simulated by finite element analysis. This study sheds light on the termination mechanism of CNTs during CVD process.
机译:摘要研究了通过单步CVD生长形成垂直排列的双层碳纳米管阵列(VACNT)的机理。 VACNTs的结构演变和缺陷浓度通过扫描电子显微镜(SEM)和拉曼光谱法进行跟踪。在生长过程中,催化剂颗粒始终停留在基材上。如SEM所示,第二个CNT层的沉淀发生在30分钟左右。在第一层的生长期间,催化剂纳米粒子因其表面上无定形碳涂层的积聚而失活,这导致第一层CNT的生长终止。然后,催化剂颗粒被气流中的氢再活化,导致第二CNT层的沉淀。第二CNT层的生长提起催化剂颗粒和基底上的无定形碳涂层。碳纳米管释放出的机械能提供了足够大的能量,可以在催化剂颗粒和基底上举起无定形碳薄片,这些薄片最终停留在通过有限元分析模拟的两层界面上。这项研究揭示了CVD过程中CNTs的终止机理。

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