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碳纳米管阴极的强流脉冲发射性能研究
引用本文:廖庆亮,张跃,夏连胜,黄运华,齐俊杰,高战军,张篁.碳纳米管阴极的强流脉冲发射性能研究[J].物理学报,2007,56(9):5335-5340.
作者姓名:廖庆亮  张跃  夏连胜  黄运华  齐俊杰  高战军  张篁
作者单位:(1)北京科技大学材料物理与化学系,北京 100083; (2)北京科技大学材料物理与化学系,北京 100083;北京科技大学新金属材料国家重点实验室,北京 100083; (3)中国工程物理研究院流体物理研究所,绵阳 621900
基金项目:国家自然科学基金;国家重大国际(地区)合作研究项目
摘    要:采用丝网印刷和涂敷方法制备了两种碳纳米管阴极,并研究了两种阴极的强流脉冲发射特性,表征了阴极表面碳纳米管的形貌及分布.研究结果表明在脉冲宽度为100 ns、电压为1.64×106 V的脉冲电场下,涂敷法制备阴极的场发射电流最高达5.11 kA,最高发射电流密度达260 A/cm2.丝网印刷法制备阴极的场发射稳定性优于涂敷法制备阴极,但其发射电流低.阴极表面发射体的形貌与分布影响了阴极的脉冲发射性能.碳纳米管阴极的脉冲发射机理为爆炸电子发射.碳纳米管阴极可以作为强 关键词: 碳纳米管 阴极 脉冲发射 强电流

关 键 词:碳纳米管  阴极  脉冲发射  强电流
文章编号:1000-3290/2007/56(09)/5335-06
收稿时间:2006-11-03
修稿时间:2006-11-03

Research on intense pulsed emission of carbon nanotube cathode
Liao Qing-Liang,Zhang Yue,Xia Lian-Sheng,Huang Yun-Hua,Qi Jun-Jie,Gao Zhan-Jun,Zhang Huang.Research on intense pulsed emission of carbon nanotube cathode[J].Acta Physica Sinica,2007,56(9):5335-5340.
Authors:Liao Qing-Liang  Zhang Yue  Xia Lian-Sheng  Huang Yun-Hua  Qi Jun-Jie  Gao Zhan-Jun  Zhang Huang
Affiliation:1Department of Materials Physics, University of Science and Technology Beijing , Beijing 100083, China; 2 State Key laboratory for Advanced Metals and Materials, University of Science and Technology Beijing, Beijing 100083, China ; 3 Institute of Fluid Physics, Chinese Academy of Engineering Physics, Mianyang 621900, China
Abstract:Two different carbon nanotube (CNT) cathodes have been made by using screen-printing and also by coating. Pulse emission properties of the two cathodes were studied, and the cathode's surface morphology was characterized. Research results show that the CNT cathode is capable of generating pulsed beams of a few kilo-amperes. The pulsed field emission properties of the cathode were tested in a diode structure powered by a high-voltage generator(under conditions of 2×10-3 Pa, 100ns, 1.64MV). The results reveal that the emission current of the cathode made by coating can attain 5.11 kA, and the highest emission current density is 260 A/cm2. The stability of cathode made by screen-printing is better than that made by coating. The pulsed emission mechanism of carbon nanotubes is shown to be explosive electron emission. This carbon nanotube cathode appears to be suitable for high-power microwave device applications.
Keywords:carbon nanotubes  cathode  pulse emission  intense current
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