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SiO 包裹 CNT 场发射器的场发射性能。

Field emission properties of SiO-wrapped CNT field emitter.

机构信息

Nanoelectronics Centre of Excellence (NOVITAS), School of Electrical and Electronics Engineering, Nanyang Technological University. 50 Nanyang Avenue 639798, Singapore.

出版信息

Nanotechnology. 2018 Jan 5;29(1):015202. doi: 10.1088/1361-6528/aa96ed.

Abstract

Carbon nanotubes (CNTs) exhibit unstable field emission (FE) behavior with low reliability due to uneven heights of as-grown CNTs. It has been reported that a mechanically polished SiO-wrapped CNT field emitter gives consistent FE performance due to its uniform CNT heights. However, there are still a lack of studies on the comparison between the FE properties of freestanding and SiO-wrapped CNTs. In this study, we have performed a comparative study on the FE properties of freestanding and SiO-wrapped CNT field emitters. From the FE measurements, freestanding CNT field emitter requires lower applied voltage of 5.5 V μm to achieve FE current density of 22 mA cm; whereas SiO-wrapped field emitter requires 8.5 V μm to achieve the same current density. This can be attributed to the lower CNT tip electric field of CNTs embedded in SiO, as obtained from the electric field simulation. Nevertheless, SiO-wrapped CNTs show higher consistency in FE current than freestanding CNTs. Under repeated FE measurement, SiO-wrapped CNT field emitter achieves consistent FE behavior from the 1st voltage sweep, whereas freestanding field emitter only achieved consistent FE performance after 3rd voltage sweep. At the same time, SiO-wrapped CNTs exhibit better emission stability than freestanding CNTs over 4000 s continuous emission.

摘要

碳纳米管(CNTs)由于其生长的 CNTs 高度不均匀,表现出不稳定的场发射(FE)行为,可靠性低。据报道,由于其 CNT 高度均匀,经过机械抛光的 SiO 包裹 CNT 场发射器具有一致的 FE 性能。然而,对于自由站立和 SiO 包裹的 CNTs 的 FE 特性之间的比较,仍然缺乏研究。在这项研究中,我们对自由站立和 SiO 包裹的 CNT 场发射器的 FE 特性进行了比较研究。从 FE 测量结果来看,自由站立的 CNT 场发射器需要 5.5 V μm 的较低施加电压才能达到 22 mA cm 的 FE 电流密度;而 SiO 包裹的场发射器需要 8.5 V μm 才能达到相同的电流密度。这可以归因于嵌入 SiO 中的 CNT 尖端电场较低,这是从电场模拟中获得的。然而,SiO 包裹的 CNTs 显示出比自由站立的 CNTs 更高的 FE 电流一致性。在重复 FE 测量中,SiO 包裹的 CNT 场发射器在第一次电压扫描时就实现了一致的 FE 行为,而自由站立的场发射器仅在第三次电压扫描时才实现了一致的 FE 性能。同时,SiO 包裹的 CNTs 在 4000 秒的连续发射过程中表现出比自由站立的 CNTs 更好的发射稳定性。

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