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Direct synthesis of carbon nanotubes on fly ash particles to produce carbon nanotubes/fly ash composites

机译:在粉煤灰颗粒上直接合成碳纳米管以生产碳纳米管/粉煤灰复合材料

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摘要

Fly ash was used as catalytic support for carbon nanotubes (CNTs) growth by chemical vapor deposition (CVD) due to having ideal compositions (SiO_2, A1_2O_3, and Fe_2O_3). In this paper, CNTs were synthesized on Ni catalyst/ fly ash substrate using CVD method. The influence of parameters (e.g., reaction temperature and gas flow rate) on the carbon yield and structure of the resulting CNTs was on the carbon yield and structure of the resulting CNTs was investigated by thermo-gravimetric analyses, Scanning electron microscopy, and Raman spectroscopy analysis. The results indicated that the growth temperature controlling had a significant effect on the diameter of CNTs. And the proper acetylene and hydrogen flow rate would decrease in defect density and increase in yield of as-grown CNTs on fly ash. Finally, the amorphous carbon on the surface of as-grown CNTs were removed by heating in air. Experimental results showed that the hydrophobic of the annealed CNTs was weak due to introducing functional groups to the surface of CNTs.
机译:由于具有理想的组成(SiO_2,Al_2O_3和Fe_2O_3),粉煤灰被用作通过化学气相沉积(CVD)生长碳纳米管(CNT)的催化载体。本文采用CVD法在Ni催化剂/粉煤灰基体上合成了碳纳米管。参数(例如反应温度和气体流速)对所得碳纳米管的碳收率和结构的影响是对碳收率的影响,并通过热重分析,扫描电子显微镜和拉曼光谱研究了所得碳纳米管的结构。分析。结果表明,生长温度的控制对碳纳米管的直径有显着影响。适当的乙炔和氢气流速将降低缺陷密度,并提高粉煤灰中生长的CNT的产率。最后,通过在空气中加热除去生长中的CNT表面的无定形碳。实验结果表明,由于向碳纳米管表面引入官能团,退火后的碳纳米管疏水性较弱。

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