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Flow-dependent directional growth of carbon nanotube forests by chemical vapor deposition

机译:通过化学气相沉积的碳纳米管森林的流量依赖性定向生长

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We demonstrated that the structural formation of vertically aligned carbon nanotube (CNT) forests is primarily affected by the geometry-related gas flow, leading to the change of growth directions during the chemical vapor deposition (CVD) process. By varying the growing time, flow rate, and direction of the carrier gas, the structures and the formation mechanisms of the vertically aligned CNT forests were carefully investigated. The growth directions of CNTs are found to be highly dependent on the nonlinear local gas flows induced by microchannels. The angle of growth significantly changes with increasing gas flows perpendicular to the microchannel, while the parallel gas flow shows almost no effect. A computational fluid dynamics (CFD) model was employed to explain the flow-dependent growth of CNT forests, revealing that the variation of the local pressure induced by microchannels is an important parameter determining the directionality of the CNT growth. We expect that the present method and analyses would provide useful information to control the micro- and macrostructures of vertically aligned CNTs for various structural/electrical applications.
机译:我们证明了垂直排列的碳纳米管(CNT)森林的结构形成主要受几何相关的气流影响,从而导致化学气相沉积(CVD)过程中生长方向的变化。通过改变生长时间,流速和载气的方向,仔细研究了垂直排列的CNT林的结构和形成机理。发现碳纳米管的生长方向高度依赖于微通道引起的非线性局部气流。随着垂直于微通道的气流的增加,生长角度会发生显着变化,而平行气流几乎没有影响。利用计算流体动力学(CFD)模型解释了碳纳米管森林的流量依赖性生长,揭示了微通道引起的局部压力变化是决定碳纳米管生长方向的重要参数。我们希望本方法和分析将提供有用的信息,以控制垂直排列的CNT在各种结构/电气应用中的微观和宏观结构。

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