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Field Electron Emission from the Tip of a Graphite Fiber

机译:石墨纤维尖端的现场电子发射

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Usually carbon wires cannot be used for obtaining remarkable field electron emission because the difficulty of sharpening its tip with a sufficient small radius of curvature to fit the electrical field. However, a large number of small fragments are formed on tips of graphite fibers after a discharge treatment with 10 kV DC high voltage on graphite fibers. These fragments observed by SEM and HRFEM are spheres, flakes and needle-like nanostructures with the size around 50 nm. In this case, each of these spheres and flakes can be an emission center in field emissions and some detectable emission currents can be obtained with a low applied voltage. Experimental results show that a single graphite fiber of 20um diameter can generate near 0.2 mA emission current with 4 kV applied voltage and the stability have been measured to be less than 10 %. It is expected that graphite fibers as a novel cold cathode material will provide a wide range of applications such as in flat panel displays, high-power and high-brightness vacuum electronic devices, and vacuum microelectronic devices.
机译:通常,碳导线不能用于获得显着的现场电子发射,因为难以锐化其具有足够小的曲率半径以适合电场的尖端。然而,在石墨纤维上用10kV DC高压的放电处理之后,在石墨纤维的尖端上形成大量小片段。通过SEM和HRFEM观察的这些片段是球形,薄片和针状纳米结构,大小约为50nm。在这种情况下,这些球体和薄片中的每一个可以是场排放中的发射中心,并且可以通过低施加的电压获得一些可检测的发射电流。实验结果表明,20um直径的单个石墨纤维可以产生近0.2MA发射电流,具有4kV施加的电压,稳定性被测量为小于10%。预计石墨纤维作为新型冷阴极材料将提供各种应用,例如平板显示器,大功率和高亮度真空电子设备和真空微电子。

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