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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Water vapor-induced structure modification of vertically-aligned carbon nanotube arrays and successive thin film coating for enhanced field emission properties
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Water vapor-induced structure modification of vertically-aligned carbon nanotube arrays and successive thin film coating for enhanced field emission properties

机译:水蒸气诱导的垂直排列碳纳米管阵列和连续薄膜涂层的结构改性,用于增强的场发射性能

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摘要

Vertically-aligned carbon nanotubes (VCNTs) are used as electron source in various field emission applications owing to its high aspect ratio, chemical inertness, mechanical strength and electrical conductivity. Here, we demonstrate that surface structure modification along with thin film coating enhances the field emission performance, such as turn-on voltage, emission site density, and stability. In the present study, VCNTs with different heights were grown on silicon wafers by thermal chemical vapor deposition followed by the structure modification of VCNTs using capillarity-driven water vapor condensation. We obtained various surface morphologies by varying the water vapor exposure time and heating temperature. In addition, the structure-modified VCNTs surfaces were coated with W and SiO2 thin films using electron-beam evaporation. It was observed that W-coated VCNTs with modified surface morphology results in the best field emission performance.
机译:由于其高纵横比,化学惰性,机械强度和电导率,垂直排列的碳纳米管(VCNT)用作各种场发射应用中的电子源。 这里,我们证明了表面结构改性以及薄膜涂层增强了场发射性能,例如导通电压,发射位点密度和稳定性。 在本研究中,通过热化学气相沉积在硅晶片上生长具有不同高度的Vcnts,然后使用毛细血管驱动的水蒸气冷凝的Vcnts的结构改性。 通过改变水蒸气暴露时间和加热温度,我们获得了各种表面形态。 另外,使用电子束蒸发涂覆结构改性的Vcnt表面与W和SiO 2薄膜涂覆。 观察到具有改性表面形态的W涂覆的VCNT导致最佳的场发射性能。

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