Cite this article:
Song Li, Liu Shuang, Zhang Geng-Min, Liu Li-Feng, Ma Wen-Jun, Liu Dong-Fang, Zhao Xiao-Wei, Luo Shu-Dong, Zhang Zeng-Xing, Xiang Yan-Juan, Shen Jun, Zhou Jian-Jun, Wang Gang, Zhou Wei-Ya. Electron field emission from single-walled carbon nanotube nonwovenJ. Chin. Phys. B, 2006, 15(2): 422-427.
| Song Li, Liu Shuang, Zhang Geng-Min, Liu Li-Feng, Ma Wen-Jun, Liu Dong-Fang, Zhao Xiao-Wei, Luo Shu-Dong, Zhang Zeng-Xing, Xiang Yan-Juan, Shen Jun, Zhou Jian-Jun, Wang Gang, Zhou Wei-Ya. Electron field emission from single-walled carbon nanotube nonwovenJ. Chin. Phys. B, 2006, 15(2): 422-427. |
Electron field emission from single-walled carbon nanotube nonwoven
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Abstract
Field emission from single-walled carbon nanotube (SWNT) nonwoven has been investigated under high vacuum with different vacuum gaps. A low turn-on electric field of 1.05\,V/\mu m is required to reach an emission current density of 10 \mu A/cm^2. An emission current density of 10 mA/cm^2 is obtained at an operating electric field of 1.88\,V/\mu m. No current saturation is found even at an emission current of 5\,mA. With the vacuum gap increasing from 1 to 10 mm, the turn-on field decreases monotonically from 1.21 to 0.68\,V/\mu m, while the field amplification is augmented. The good field-emission behaviour is ascribed to the combined effects of the intrinsic field emission of SWNT and the waved topography of the nonwoven. -
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