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首页> 外文期刊>Journal of Semiconductors >Fabrication research on the sandwich layered cathode electrode for a triode field emission display prototype
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Fabrication research on the sandwich layered cathode electrode for a triode field emission display prototype

机译:用于三极管场发射显示器原型的夹层阴极的制造研究

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Based on an effective screen-printing process, a novel sandwich layered cathode electrode was developed on a cathode faceplate. The ZnO electrode was sandwiched between an indium tin oxide (ITO) electrode layer and a silver electrode layer, and the carbon nanotube was prepared directly on the exposed ITO electrode layer surface. The cathode potential could be conducted to the carbon nanotube with the sandwich layered cathode electrode. Using the carbon nanotube as a field emitter, a triode field emission display prototype with a sandwich layered cathode electrode was fabricated, which possessed a better field emission characteristic, higher luminous brightness and better emission image luminance uniformity. The turn-on electric field was 1.88 V/μm and the measured maximum field emission current was 2273.6 μA at 3.19 V/μm. By the method of adjusting the field emission current, the electron-emitting uniform capacity of the carbon nanotube cold cathode could be modified, and the emission image luminance uniformity and the emission current stability of triode field emission display prototype was also be improved significantly. The emission current fluctuation of the sandwich layered cathode electrode type field emission display was less than 1.1%. Furthermore, the total manufacture cost of the triode field emission display prototype was low.
机译:基于有效的丝网印刷工艺,在阴极面板上开发了一种新型的夹心层状阴极。将ZnO电极夹在氧化铟锡(ITO)电极层和银电极层之间,并且在暴露的ITO电极层表面上直接制备碳纳米管。可以利用夹层式阴极电极将阴极电势传导至碳纳米管。以碳纳米管作为场发射器,制作了具有夹层阴极的三极管场发射显示器原型,具有更好的场发射特性,更高的发光亮度和更好的发射图像亮度均匀性。导通电场为1.88 V /μm,在3.19 V /μm时测得的最大场发射电流为2273.6μA。通过调节场发射电流的方法,可以改变碳纳米管冷阴极的电子发射均匀容量,并可以显着提高三极管场发射显示器原型的发射图像亮度均匀性和发射电流稳定性。夹层阴极电极型场致发射显示器的发射电流波动小于1.1%。此外,三极管场发射显示器原型的总制造成本很低。

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