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首页> 外文期刊>Bulletin of the Korean Chemical Society >Electrical Characteristics of Carbon Nanotubes by Plasma and Microwave Surface Treatments
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Electrical Characteristics of Carbon Nanotubes by Plasma and Microwave Surface Treatments

机译:等离子体和微波表面处理对碳纳米管的电学特性

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The plasma and microwave surface treatments of carbon nanotubes that loaded on plastic substrates were carried out with expecting a change of carbon nanotube dispersion by increasing treatment time. The microwave treatment process was undergone by commercial microwave oven (800 W). The electrical property was measured by hall measurement and resistance was increased by increasing O2 flow rate of plasma, suggesting an improvement of carbon nanotube dispersion and a possibility of controlling the resistances of carbon nanotubes by plasma surface treatment. The resistance was increased in both polyethylene terephthalate and polyimide substrates by increasing O2 flow rate. Resistance changes only slightly with different O2 flow treatment in measure rho for all polyimide samples. Sheet resistance is lowest in polyimide substrate not due to high carbon nanotube loading but due to tendency to remain in elongated structure. O2 or N2 plasma treatments on both polyethylene terephthalate and polyimide substrates lead to increase in sheet resistance.
机译:进行了装载在塑料基板上的碳纳米管的等离子体和微波表面处理,期望通过增加处理时间来改变碳纳米管的分散性。微波处理过程由商用微波炉(800 W)进行。通过霍尔测量来测量电性能,并且通过增加等离子体的O 2流速来增加电阻,这表明碳纳米管分散性的改善以及通过等离子体表面处理来控制碳纳米管的电阻的可能性。通过增加O2流速,在聚对苯二甲酸乙二醇酯和聚酰亚胺基材中的电阻都增加了。对于所有聚酰亚胺样品,在不同的氧气流量处理下,电阻变化仅很小。聚酰亚胺衬底中的薄层电阻最低,这不是由于高碳纳米管负载,而是由于倾向于保留在细长结构中。在聚对苯二甲酸乙二醇酯和聚酰亚胺基材上进行O2或N2等离子体处理会导致薄膜电阻增加。

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