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Growth mechanism of 3D graphene-carbon nanotube hybrid structure

机译:3D石墨烯-碳纳米管杂化结构的生长机理

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In this paper, a novel molecular dynamic model is presented to describe the growth mechanism of three-dimensional (3D) graphene-carbon nanotube (G-CNT) hybrid structure synthesized by catalytic chemical vapor deposition. For this purpose, first, the physisorption of a carbon atom on a graphene sheet (GS) is studied. Then the model is formulated by using kinetic theory and the longitudinal phonon oscillation of adsorbed carbon atoms on GS. Results show that the CNT grows on GS up to 0.3 mm. Also, there is an optimum temperature for growth of the 3D G-CNT hybrid structure, which can be calculated by the presented model. Finally, it is shown that increase of partial pressure leads to increase of length of growing CNT on GS.
机译:本文提出了一种新颖的分子动力学模型来描述通过催化化学气相沉积合成的三维(3D)石墨烯-碳纳米管(G-CNT)杂化结构的生长机理。为此,首先,研究碳原子在石墨烯片(GS)上的物理吸附。然后利用动力学理论和GS上吸附的碳原子的纵向声子振荡建立模型。结果表明,CNT在GS上生长至0.3 mm。同样,对于3D G-CNT杂化结构的生长,存在最佳温度,可以通过提出的模型进行计算。最后,表明分压的增加导致在GS上生长的CNT的长度增加。

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