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Experimental study of corona discharge with multi-walled carbon nanotubes electrode

机译:多壁碳纳米管电极电晕放电的实验研究

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Corona discharges with metal electrodes have been extensively studied both experimentally and theoretically, but the discharges on carbon nanotubes electrodes have not been reported. An experimental study of corona discharge on aligned multi-walled carbon nanotubes electrode at atmospheric pressure was made in this paper. The fabrication of aligned multi-walled carbon nanotubes (MWCNTs)electrode and measuring system of corona discharge were presented. The breakdown voltage and corona pulses on nanotubes electrode were discussed as compared with aluminum electrodes. It was found that the breakdown voltage reduced largely by using nanotubes electrode, and the repetition rate of nanotube pulses was much higher than that of metal pulses. The mechanisms of positive and negative corona pulse and the field emission of carbon nanotubes were all also discussed in detail. The experimental results showed that the positive corona has a more steady current before breakdown and more regular pulse after breakdown compared with negative corona, so the MWCNTs anode would be used in the carbon nanotubes gas sensor.
机译:在实验和理论上都对带有金属电极的电晕放电进行了广泛的研究,但是碳纳米管电极上的放电尚未见报道。进行了大气压定向多壁碳纳米管电极电晕放电的实验研究。介绍了取向多壁碳纳米管电极的制备和电晕放电测量系统。与铝电极相比,讨论了纳米管电极上的击穿电压和电晕脉冲。发现通过使用纳米管电极,击穿电压大大降低,并且纳米管脉冲的重复率远高于金属脉冲。还详细讨论了正负电晕脉冲的机理以及碳纳米管的场发射。实验结果表明,与负电晕相比,正电晕在击穿前具有更稳定的电流,在击穿后具有更规则的脉冲,因此,碳纳米管气体传感器将采用多壁碳纳米管阳极。

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