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Cold cathodes for applications in poor vacuum and low pressure air environments: Carbon nanotubes versus ZnO nanoneedles

机译:适用于不良真空和低压空气环境的冷阴极:碳纳米管与ZnO纳米针

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Effects of gas pressure on the electron field emission (FE) properties of zinc oxide (ZnO) nanoneedles and carbon nanotubes (CNTs) were investigated. The FE properties for ZnO nanoneedles almost fully recovered after being subjected to FE tests in poor vacuum and low pressure gas environments and then characterized again in better vacuum around 2 x 10~(-6) Torr. In the contrast, the FE properties for CNTs did not recover after being subjected to FE tests in poor vacuum and low pressure gas environments. Reversibility and sensitivity of the FE of ZnO and CNTs to air pressures were studied for potential applications to field emission display (FED) and vacuum microelectronic devices. The pressure-dependant, time-dependant, and pressure-time-dependant field emission behaviors of ZnO nanoneedles and CNTs will be compared and discussed.
机译:研究了气体压力对氧化锌(ZnO)纳米针和碳纳米管(CNT)的电子场发射(FE)性能的影响。 ZnO纳米针的FE特性在恶劣的真空和低压气体环境中进行FE测试后几乎完全恢复,然后在2 x 10〜(-6)Torr左右的更高真空中再次得到表征。相反,在不良真空和低压气体环境中进行CNT测试后,CNT的FE特性没有恢复。研究了ZnO和CNT的FE对气压的可逆性和敏感性,可用于场发射显示器(FED)和真空微电子器件。将对ZnO纳米针和CNT的压力依赖性,时间依赖性和压力时间依赖性场发射行为进行比较和讨论。

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