一维氧化锌纳米结构发射体的研究

Jie Chen, W. Lei, Xiaobing Zhang, Y. Di, K. Chu, Hui Mu
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引用次数: 0

摘要

场发射显示器(FED)是一种真空电子器件,其工作原理与传统的阴极射线管(CRT)非常相似。场致发射体的发射电流和驱动电压等显示性能在很大程度上决定于场致发射体。除了发射特性外,场致发射体的几何因素、热稳定性和环境不灵敏度对场致发射器件也很重要。一维纳米氧化锌材料具有纵横比高、机械性能好、化学稳定性好等特点。本文研究了具有四足结构的纳米ZnO发射体的发射稳定性。采用丝网印刷法制备了ZnO冷阴极,并在ITO阳极真空微电子器件中研究了其发射特性。介绍了ZnO阴极随时间变化的发射稳定性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The study of One-dimensional Zinc Oxide Nanostructure Emitters
Field emission display (FED) is a kind of vacuum electron device, and its principle is very similar to that of a traditional cathode ray tube (CRT). The display performances of a FED, such as emission current and the driving voltage, are determinated largely by the field emitters. Besides the emission characteristic, the geometric factors, thermal stability and ambient insensitivity of the field emitter are also very important in a FED device. One dimensional nano zinc oxide materials have the properties of high aspect ratio, good mechanical performance and chemical stability. In this paper, the emission stability of nano ZnO emitters which has the tetrapod-like nanostructure, is studied. The ZnO cold cathode is fabricated with the screen printing method, and the emission characteristics are investigated in a vacuum microelectronic device using ITO anode. The emission stability recorded over time of the ZnO cathode is presented
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