首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Cathodoluminescence of a 2 inch ultraviolet-light-source tube based on the integration of AlGaN materials and carbon nanotube field emitters
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Cathodoluminescence of a 2 inch ultraviolet-light-source tube based on the integration of AlGaN materials and carbon nanotube field emitters

机译:基于AlGaN材料和碳纳米管场发射器的整合的2英寸紫外光光源管的阴极发光

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High efficiency and mass-scale production ultraviolet (UV) light sources have become a basic requirement for various applications, and as such have attracted considerable technological interest. Here, a flat 2 inch UV-light-source tube-based triode structure operating at 330 nm with a pulse-scan mode was achieved by integrating the AlGaN/GaN multi-quantum well (MQW) heterostructure as a cathodoluminescence (CL) layer and carbon nanotube (CNT) field emitters. The AlGaN/GaN MQW heterostructure CL layer was grown on a high-quality 2 inch AlN/sapphire template through metal-organic chemical vapor deposition. The CNT emitters were fabricated on the metal substrate using a cost-effective print screen method. The advantages of these emitters include their high stable emission efficiency for large-scale production, cold emission nature, controllable emission by the electric field, and environmentally friendly nature. This promising and effective integration demonstrates an output power of 590 mW and a power efficiency of 2.45% with a low consumption energy of 24 W (anode current 3 mA; anode voltage 8 kV) in pulse-scan mode. This work is the first step toward realizing future mass-scale and high efficiency UV light source tubes over a wide range of wavelengths.
机译:高效率和质量级生产紫外线(UV)光源已成为各种应用的基本要求,因此由于这种吸引了相当大的技术兴趣。这里,通过将AlGaN / GaN多量子阱(MQW)异质结构与阴极发光(CL)层相结合来实现在330nm下操作的扁平2英寸UV-光源管的三极管结构,以脉冲扫描模式实现。碳纳米管(CNT)场发射器。通过金属 - 有机化学气相沉积在高质量的2英寸ALN /蓝宝石模板上生长AlGaN / GaN MQW异质结构Cl层。使用经济高效的印刷筛法法在金属基板上制造CNT发射器。这些发射器的优点包括其高稳定的发射效率,用于大规模生产,冷排放性,电场可控排放,环保性质。这种有希望和有效的集成证明了590 MW的输出功率和2.45%的功率效率,具有24W(阳极电流3 mA;阳极电压8kV)的低消耗能量,脉冲扫描模式。这项工作是在宽范围波长范围内实现未来质量级和高效UV光源管的第一步。

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