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Performance Enhancement by Using Graphite-In-Diamond Nanoparticles on MgO Protective Film in AC Plasma Display

机译:通过在交流电等离子体显示器中的MgO保护膜上使用石墨-钻石-纳米颗粒提高性能

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Graphite-in-diamond (GiD) nanoparticles in which the secondary-electron-emission coefficient was larger than the MgO protective film were introduced to enhance the electrical and optical characteristics in alternating-current plasma displays. The GiD nanoparticles suspended stably in ethanol solvent were sprayed uniformly on an MgO film. Based on the results of field-emission scanning electron microscopy and energy dispersive X-ray spectroscopy analysis after continuous operation for approximately 300 h, the morphology of the GiD nanoparticles as well as the carbon element in the particles was preserved nicely, and their characteristics could ensure long lifetime without degradation in plasma environment. It is noted that the average firing voltages of the GiD panels are 135 and 80 V lower than those of the conventional one for gas mixtures of Ne $+$ He (50%) $+$ Xe (15%) and Ne $+$ He (50%) $+$ Xe (30%), respectively. It was revealed that the optimum coverage ratio of the GiD nanoparticles sprayed on the MgO film was 6%. The luminous efficiency of the GiD panel was improved up to $sim$40% for relatively higher xenon contents.
机译:引入二次电子发射系数大于MgO保护膜的金刚石石墨(GiD)纳米颗粒,以增强交流电等离子体显示器的电学和光学特性。将稳定悬浮在乙醇溶剂中的GiD纳米颗粒均匀喷涂在MgO膜上。根据连续运行约300 h后的场发射扫描电子显微镜和能量色散X射线光谱分析结果,可以很好地保留GiD纳米颗粒的形态以及颗粒中的碳元素,并且可以保留其特征。确保长寿命而不会在等离子环境中退化。注意到,对于Ne $ + $ He(50%)$ + $ Xe(15%)和Ne $ + $的混合气体,GiD面板的平均点火电压比常规面板低135和80V。他(50%)$ + $ Xe(30%)。结果表明,喷涂在MgO薄膜上的GiD纳米颗粒的最佳覆盖率为6%。相对较高的氙含量,GiD面板的发光效率提高了sim $ 40%。

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