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Modification of New Carbon Based Nano-Materials for Field Emission Devices

机译:用于场发射器件的新型碳基纳米材料的改性

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Field emission display (FED) is evolving as a promising technique of flat panel displays in the future. In this paper, various carbon based nanostructures are acted as cathode materials for field emission devices. Dendrite-like diamond-like carbon emitters, carbon nanotubes, carbon nanotips are synthesized by microwave plasma chemical vapor deposition. Many factors affect the performance of field emitters, such as the shape, work function and aspect ratio of emission materials. Modified process of carbon based nano-materials for enhancing field emission efficiency are included intrinsic and extrinsic process. These reformations contain the p-type and n-type doping, carburization and new ultra well-aligned carbon nano-materials. It is found that carbon nano-materials grown on micropatterned diode show higher efficiency of FED. In addition, to achieve a low- turn-on field, the novel scheme involving a new fabrication process of gated structure metal-insulator-semiconductor (MIS) diode by IC technology is also presented.
机译:场发射显示器(FED)未来将发展成为一种有前途的平板显示器技术。在本文中,各种基于碳的纳米结构被用作场发射器件的阴极材料。通过微波等离子体化学气相沉积法合成树状类金刚石状碳发射体,碳纳米管,碳纳米尖端。许多因素影响场发射器的性能,例如发射材料的形状,功函数和长宽比。用于提高场发射效率的碳基纳米材料的改性工艺包括内在和外在工艺。这些改革包括p型和n型掺杂,渗碳和新型超良好排列的碳纳米材料。发现在微图案二极管上生长的碳纳米材料显示出更高的FED效率。此外,为了实现低导通磁场,还提出了一种新方案,该方案涉及通过IC技术制造栅结构金属-绝缘体-半导体(MIS)二极管的新工艺。

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