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In situ characterization of the field-emission behaviour of individual carbon nanotubes

机译:单个碳纳米管的场发射行为的原位表征

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The current-voltage (I-V) characteristics of carbon nanotubes (CNTs) during field emission were investigated by in situ imaging and field-emission (FE) measurement inside a field-emission scanning electron microscope (FE-SEM). A primary electron of the FE-SEM could induce and enhance a large stimulated electron emission from a CNT which might be due to the strong local field on the tip of the CNT in the presence of an applied voltage. FE of bent nanotubes (BNTs) can initially occur after they are fully straightened or it can start in the bent state (during geometrical straightening) as the applied field increases. The FE from a single CNT follows FN (Fowler-Nordheim) behaviour with a single linear slope in the FN plot. The FE from two nanotubes with a geometrical change during FE showed transition of the FN slope from the low voltage to the high voltage region, which could be due to interactions between two dynamic neighbouring BNTs.
机译:通过场发射扫描电子显微镜(FE-SEM)内部的原位成像和场发射(FE)测量,研究了场发射过程中碳纳米管(CNT)的电流-电压(I-V)特性。 FE-SEM的一次电子可以诱导并增强来自CNT的大量受激电子发射,这可能是由于存在施加电压时CNT尖端上的强局部电场引起的。弯曲的纳米管(BNT)的FE最初可能在它们完全拉直之后发生,或者随着施加电场的增加,它可以在弯曲状态(几何拉直期间)开始。来自单个CNT的FE遵循FN(Fowler-Nordheim)行为,并且在FN图中具有单个线性斜率。来自两个纳米管的FE在FE过程中发生几何变化,显示FN斜率从低压区域过渡到高压区域,这可能是由于两个动态相邻BNT之间的相互作用所致。

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