化学气相沉积反应中金属-碳协同催化碳纳米管生长的理论和实验证据
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Graphical Abstract
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Abstract
The nucleation and growth of carbon nanotubes (CNTs) using chemical vapor deposition with a metalcarbon catalyst have been studied experimentally and theoretically. Results suggest that the nucleation and growth of multiwalled CNTs are not due to the metal alone, but that carbon nuclei (once formed) also contribute to radial and axial growth. Metal particles mainly promote the nucleation and growth of the innermost carbon shell(s), and catalyze the ordering of the carbon atoms to form graphene structures. The intrinsic difference between multiwalled CNT formation and singlewalled CNT formation seems to be associated with a selfcatalytic function of carbon nuclei.
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