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Phosphorescent Organic Light-Emitting Devices: Working Principle and Iridium Based Emitter Materials

机译:磷光有机发光器件:工作原理和铱基发射体材料

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摘要

Even though organic light-emitting device (OLED) technology has evolved to a point where it is now an important competitor to liquid crystal displays (LCDs), further scientific efforts devoted to the design, engineering and fabrication of OLEDs are required for complete commercialization of this technology. Along these lines, the present work reviews the essentials of OLED technology putting special focus on the general working principle of single and multilayer OLEDs, fluorescent and phosphorescent emitter materials as well as transfer processes in host materials doped with phosphorescent dyes. Moreover, as a prototypical example of phosphorescent emitter materials, a brief discussion of homo- and heteroleptic iridium(III) complexes is enclosed concentrating on their synthesis, photophysical properties and approaches for realizing iridium based phosphorescent polymers.
机译:尽管有机发光器件(OLED)技术已经发展到现在已经成为液晶显示器(LCD)的重要竞争者,但要使OLED的完整商业化,还需要进一步的科学努力来致力于OLED的设计,工程和制造。这项技术。沿着这些思路,本工作回顾了OLED技术的本质,特别关注了单层和多层OLED,荧光和磷光发射体材料以及掺有磷光染料的主体材料中的转移过程的一般工作原理。此外,作为磷光发射体材料的典型示例,本文简要介绍了同型和杂配铱(III)配合物,重点是其合成,光物理性质和实现铱基磷光聚合物的方法。

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