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Field emission behavior of the transferred substrate aligned array carbon nanotube films

机译:转移基板对齐阵列碳纳米管膜的场排放行为

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A novel technology is explored, using which an aligned array carbon nanotube film (aacf) can be perfectly peeled off from itself growing substrate as well as transferred onto an aluminum tape substrate, being assembled a composite film together with the Al tape. The electrical conductance and the field emission behaviors have been tested for the composite films. Experimental results show that the composite film has electrical resistance between 10 ohm and 1127 ohm, which depends on thickness and quality of the sticky glue layer between the carbon nanotub (cnt) film and the Al substrate. F-N curve proves the electronic emission of the composite film is field emission. I-V measurement curves demonstrate that the composite film with good electrical conductance has better field emission behavior and that the turn-on field and threshold field of sample 1 are 1.1 V/um and 1.8 V/um respectively. The technology datum show the composite film can meet the requirements of the emission cathode in flat panel displays.
机译:探索了一种新颖的技术,使用该技术可以从自身生长的基板以及转移到铝带基板上的自身生长衬底上完全剥离,以及将复合膜与AL胶带组装在一起。已经测试了电导率和场发射行为的复合膜。实验结果表明,复合膜在10欧姆和1127欧姆之间具有电阻,这取决于碳纳米槽(CNT)膜和Al底物之间的粘性胶层的厚度和质量。 F-N曲线证明了复合膜的电子发射是场发射。 I-V测量曲线表明,具有良好电导率的复合膜具有更好的场排放行为,并且样品1的导通场和阈值场分别为1.1V / UM和1.8V / um。技术基准显示复合胶片可以满足平板显示器中发射阴极的要求。

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