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AbstractThis paper introduces application of vacuum resistance furnace in the process of highpressure natrium lamp and selfballast mercury lamp 's lumious eletric pole, and detail the difference between it and the process technology of traditional oxidate 's negative pole and some developments of improvement of production 's quality and economization of energy.

本文介绍了真空电阻炉在制备高压钠灯、自镇流汞灯发光电极方面的应用。并较为详尽地阐述了与传统氧化物阴极制备工艺的区别及其在提高产品质量、节约能源方面取得的进展。

In conventional colorPDP adopting address displayperiod separation technology, as enhancing the definition and increasing subfield numbers, the luminance of PDP would be severely reduced;it is difficult to apply to a high definition display. A new driving method, which adopts the panel with equalinterval arranged electrodes, the line repetition and alternate lighting of surface, is proposed. It is significant that the new method overcomes the shortcoming of existing nonlighting area in conventional PDP,and...

In conventional colorPDP adopting address displayperiod separation technology, as enhancing the definition and increasing subfield numbers, the luminance of PDP would be severely reduced;it is difficult to apply to a high definition display. A new driving method, which adopts the panel with equalinterval arranged electrodes, the line repetition and alternate lighting of surface, is proposed. It is significant that the new method overcomes the shortcoming of existing nonlighting area in conventional PDP,and makes intervals between all electrodes on PDP lighting alternately. So the definition and the luminance are greatly enhanced and subfield number is obviously increased. It is worth mentioning that the technology is hardly changed and the circuit cost is almost kept at the original level. And a measuring result at a 12inch experimental PDP module shows that the peak luminance achieves to 450 candelas per square meters.

针对采用寻址与显示分离技术的传统彩色PDP应用于高清晰度显示时存在分辨率和子场数目的提高将导致亮度降低的问题,提出了一种新的复合型驱动方法.该方法采用电极等间距排列的PDP屏以及偶数行对奇数行图像数据的复制,将一帧图像分奇偶场交替显示,克服了传统PDP屏存在不发光电极间隙的缺点,使PDP屏所有电极间隙交替放光,提高了彩色PDP的亮度和分辨率,同时增加了子场数目;该方法还具有制屏工艺改动不大和电路成本无明显增加的优点.测量结果表明,采用复合型驱动技术的PDP,其峰值亮度可达到450cd/m2.

This paper systematically introduces the development of dendritic conjugated polymers including the characteristics and functionalized application of full-conjugated dendritic polymers,partial-conjugated dendritic polymers and dendrinized conjugated polymers in organic light emitting diode(OLED),electrode,sensor,and light-harvesting systems etc.It summarizes the affecting factors on the optical and electrical properties of dendritic conjugated polymers including the structure factors containing the generation...

This paper systematically introduces the development of dendritic conjugated polymers including the characteristics and functionalized application of full-conjugated dendritic polymers,partial-conjugated dendritic polymers and dendrinized conjugated polymers in organic light emitting diode(OLED),electrode,sensor,and light-harvesting systems etc.It summarizes the affecting factors on the optical and electrical properties of dendritic conjugated polymers including the structure factors containing the generation factor,the scaffolding factor,the periphery factor,the core factor,the metallic ion factor etc.and the technology factors such as the solvent and the concentration factors.Additionally,the perspectives and the problems should be solved in the future are provided.

本文介绍了树枝状共轭聚合物的最新发展,包括全共轭、部分共轭树枝状聚合物及树枝化共轭聚合物的特点及其在电致发光、电极、传感器以及光探测等领域的功能化应用;详细讨论了包括代数、支化单元、端基、核、金属离子的络合等结构因素以及溶剂和浓度等工艺因素对电荷传输的影响;并进一步提出该领域研究前景及有待于解决的问题。

 
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