Cole M T, Parmee R J, Kumar A, Collins C M, Kang M H, Xiao J, Cepek C, Yuan X, Milne W I
Department of Engineering, Electrical Engineering Division, Cambridge University, CB3 0FA, UK.
Nanoscale Horiz. 2016 Jul 20;1(4):304-312. doi: 10.1039/c6nh00071a. Epub 2016 May 17.
Here we report on a straightforward and rapid means of enhancing the field electron emission performance of nascent vertically aligned multi-walled carbon nanotubes by introducing a polar zwitterionic conjugated polyelectrolyte adlayer at the vacuum-emitter interface. We attribute the observed 66% decrease in turn-on electric field to the augmented emitter micro-morphology and shifted surface band structure. The composite emitters can be optically modulated by exploiting the absorption cross-section of the solution cast adlayer, which increases the local carrier concentration which broadens the effective electrostatic shape of the emitter during optical excitation. Assessment via scanning anode field emission microscopy reveals a 25% improvement in DC time stability, a significant reduction in long-term hysteresis shift, and a threefold increase in bandwidth during pulsed mode operation.
在此,我们报告了一种直接且快速的方法,即通过在真空发射极界面引入极性两性离子共轭聚电解质吸附层,来提高新生垂直排列多壁碳纳米管的场电子发射性能。我们将观察到的开启电场降低66%归因于发射极微观形态的改善和表面能带结构的改变。通过利用溶液浇铸吸附层的吸收截面,可以对复合发射极进行光学调制,这会增加局部载流子浓度,从而在光激发期间拓宽发射极的有效静电形状。通过扫描阳极场发射显微镜评估发现,直流时间稳定性提高了25%,长期滞后位移显著减小,脉冲模式操作期间带宽增加了三倍。