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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Carbon nanostructures synthesized by arc discharge between carbon and iron electrodes in liquid nitrogen
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Carbon nanostructures synthesized by arc discharge between carbon and iron electrodes in liquid nitrogen

机译:液态氮中碳电极与铁电极之间的电弧放电合成的碳纳米结构

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摘要

An idea of using pure iron and graphite electrodes was employed for synthesizing carbon nanoparticles by arc discharge in liquid nitrogen. The synthesized products consist of multiwalled carbon nanotubes (MW-CNT), carbon nanohorns (CNH), and carbon nanocapsules (CNC) with core-shell structure. Effect of metallic cathode and discharge current on product structure and yield had been experimentally investigated. Typical evidence of transmission electron microscopic images revealed that under some certain conditions of discharge in liquid nitrogen the synthesized products mainly consisted of CNCs with mean diameter of 50-400 nm. When conventional graphitic electrodes were employed, CNHs with some MW-CNTs were mainly synthesized. Meanwhile, MW-CNTs with diameter of 8-25 run and length 150250 nm became less selectively synthesized as cathode deposit under the condition of discharge in liquid nitrogen with higher arc current. The production yield of carbon nanoparticles synthesized by either carbon-carbon or carbon-iron electrodes became also lower with an increase in the arc current.
机译:利用纯铁和石墨电极的想法被用于通过在液氮中的电弧放电来合成碳纳米颗粒。合成的产品包括具有核壳结构的多壁碳纳米管(MW-CNT),碳纳米角(CNH)和碳纳米胶囊(CNC)。实验研究了金属阴极和放电电流对产物结构和产率的影响。透射电子显微镜图像的典型证据表明,在某些条件下在液氮中放电时,合成产物主要由平均直径为50-400 nm的CNC组成。当使用常规的石墨电极时,主要合成具有一些MW-CNT的CNH。同时,在具有较高电弧电流的液氮中放电的条件下,直径为8-25nm且长度为150250nm的MW-CNT变得较少选择性地合成为阴极沉积。随着电弧电流的增加,由碳-碳或碳-铁电极合成的碳纳米颗粒的产率也降低。

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