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Growth Phenomena of Carbon Nanotubes Over Co-Mo/MgO Catalyst from the Decomposition of Acetylene

机译:乙炔分解下Co-Mo / MgO催化剂上碳纳米管的生长现象

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Carbon nanotubes (CNTs) were grown over 12Mo:18Co:70MgO catalyst at 500, 700 and 900° C from C2H2 decomposition for 30 minutes using chemical vapor deposition (CVD) method. The highest yield of CNTs was observed at 700O C. The lowest diameter of CNTs appeared at 900° C. Quadruple mass spectroscopy (QMS) study on the species generated from the catalytic decomposition of C2H2 identified that the catalyst consumed C species during the growth stage of CNTs. The consumption period of C varied with temperature and showed a close relationship with the carbon yield. At 500, 700 and 900°C, the consumption periods were 12, 35 and 20 min, respectively, and the corresponding carbon yields were 7, 385 and 89%. From the XRD analysis of catalyst surface, and XRD and Raman analysis of the CNTs, it was realized that Co particles released from Co3O4, CoMoO4 and CoO-MgO were participated in CNTs growth at 500, 700 and 900° C, respectively. The Co particles acted as the transporting medium of carbon to grow CNTs. The tubes are MWNTs and grown by tip growth mode. Bangladesh J. Sci. Ind. Res. 42(2), 105-114, 2007
机译:碳纳米管(CNT)使用化学气相沉积(CVD)方法在12Mo:18Co:70MgO催化剂上由C2H2分解在500、700和900°C下生长30分钟。在700°C时观察到最高的CNTs.CNT的最小直径出现在900°C。对C2H2催化分解产生的物质进行四重质谱(QMS)研究发现,催化剂在生长阶段消耗了C物质的碳纳米管。 C的消耗时间随温度而变化,并且与碳产率密切相关。在500、700和900°C下,消耗时间分别为12、35和20分钟,相应的碳产率为7、385和89%。从催化剂表面的XRD分析,以及CNT的XRD和拉曼分析,认识到从Co3O4,CoMoO4和CoO-MgO释放的Co颗粒分别参与了CNT在500、700和900℃下的生长。 Co颗粒充当碳的生长碳纳米管的传输介质。管是MWNT,并通过尖端生长模式生长。孟加拉国科学杂志工业研究42(2),105-114,2007

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