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Field Emission Property Studies and Fabrication of Diode FED with Improved Cold-Cathode Emitter

机译:改进的冷阴极发射极的场发射特性研究和二极管FED的制造

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Using the soda-lime glass as substrate, the improved printed cold-cathode emitters were prepared for the field emission display device. The indium-tin-oxide film over the substrate surface was divided into discrete indium-tin-oxide stripes. With the screen-printing process, the two parallel silver electrodes were fabricated on one indium-tin-oxide stripes and the carbon nanotube was prepared over the silver electrode surface. It was found that the carbon nanotube on the edge of cathode electrode would emit more electrons. For preventing the damage of carbon nanotube cathode, the previous silver slurry baking process was adopted. Then, the baked silver slurry layer and the printed carbon nanotube pastes would be simultaneous sintered. The detailed fabrication and vacuum-packaging process for the whole display device were also given. The fully-sealed display device possessed better field emission property and high display brightness for the green phosphor, whose fabrication process was simple and low-cost.
机译:使用钠钙玻璃作为衬底,为场发射显示装置制备了改进的印刷冷阴极发射器。将衬底表面上的氧化铟锡膜分成离散的氧化铟锡条。通过丝网印刷工艺,在一条铟锡氧化物条上制作了两个平行的银电极,并在银电极表面上制备了碳纳米管。发现在阴极边缘的碳纳米管将发射更多的电子。为了防止碳纳米管阴极的损坏,采用了先前的银浆烘烤工艺。然后,将同时烧结烘焙的银浆层和印刷的碳纳米管浆料。还给出了整个显示装置的详细制造和真空包装工艺。全密封的显示装置对绿色荧光粉具有较好的场致发射性能和较高的显示亮度,其制造工艺简单,成本低。

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