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Formation of SWCNTs in arc plasma: Effect of graphitization of Fe-doped anode and optical emission studies

机译:电弧等离子体中单壁碳纳米管的形成:掺铁阳极的石墨化作用和光发射研究

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摘要

Fe-doped (ca. 1 at%) homogeneous graphite electrodes (with different graphite microcrystallites, degree of graphitization and, thereby, electrical conductivities) were used to produce single-walled carbon nanotubes (SWCNTs) in Ar/Kr/Xe-H-2 arc plasma under pressure equal to 26 kPa. The use of electrode with the smaller primary particle size (about 5 nm) comparing to the well-graphitized electrode (25 nm) drastically increased the yield of SWCNTs in Ar-H-2 arc plasma, while plasma parameters (temperature, C-2 content, and namely carbon vapor pressure) remained on similar levels. However, the use of electrodes with larger grain size (25 nm) can lead to SWCNTs growth when they are arc ablated under the presence of Kr (or Xe)-H-2 gas mixture. Thus, the mechanism of CNT formation seems to be more complex that the one involving only simple carbon species (e.g., C-2).
机译:掺铁(约1 at%)的均质石墨电极(具有不同的石墨微晶,石墨化程度,从而具有导电性)被用于生产Ar / Kr / Xe-H-中的单壁碳纳米管(SWCNT) 2个电弧等离子体,压力等于26 kPa。与石墨化良好的电极(25 nm)相比,使用具有较小初级粒径(约5 nm)的电极可大大提高Ar-H-2电弧等离子体中SWCNT的产率,而等离子体参数(温度,C-2含量,即碳蒸气压)保持在相似的水平。但是,当在Kr(或Xe)-H-2气体混合物的存在下进行电弧烧蚀时,使用较大晶粒尺寸(25 nm)的电极会导致SWCNT的生长。因此,CNT形成的机制似乎比仅涉及简单碳物种(例如,C-2)的机制更为复杂。

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