首页> 外文会议>Symposium on Flat-Panel Displays and Sensors-Principles, Materials and Processes held April 4-9, 1999, San Francisco, California, U.S.A. >Improved electroluminescence lifetime and efficiency of polymer light-emitting diodes with plasma-treated indium tin oxide anodes
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Improved electroluminescence lifetime and efficiency of polymer light-emitting diodes with plasma-treated indium tin oxide anodes

机译:具有等离子体处理的铟锡氧化物阳极的聚合物发光二极管的电致发光寿命和效率得到改善

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We studied the influence of various surface treatments of indium-tin oxide anodes on the operational stability of high-efficiency green-emitting polymer light-emitting diodes, fabilicated with a doped poly(3, 4-ethylene dioxythiophene) PEDOT hole transport layer, a polyfluorene-based emissive alyer, and Ca-Al cathodes. The anodes were modified by physical (oxygen-plasma), chemical (aquaregia), or combined treatments. Oxygen-plasma improves the stability under constant current over all the other anodes, with half-brightness lifetimes (initial birghtness, 200 cd/m~2) two to five times longer than for untreated samples, and 1000 teimes longer than for aquaregia ones. We derive two major indications for optimisation of PLEDs. First, thermal management of the diode is of the uppermost importance. Second, the ITO anode and in gneral the electrical properties of the hole-injecting contact are crucial to device operation, even in the presence of a hole transport layer.
机译:我们研究了铟锡氧化物阳极的各种表面处理对高效绿色发光聚合物发光二极管(具有掺杂的聚(3,4-乙烯二氧噻吩)PEDOT空穴传输层)的操作稳定性的影响。聚芴基发光层和Ca-Al阴极。通过物理(氧等离子体),化学(无水硫酸铝)或联合处理对阳极进行改性。氧等离子体改善了所有其他阳极在恒定电流下的稳定性,其半亮度寿命(初始白度为200 cd / m〜2)比未处理的样品长两倍至五倍,并且比无色样品长1000倍。我们得出优化PLED的两个主要迹象。首先,二极管的热管理至关重要。其次,即使在存在空穴传输层的情况下,ITO阳极以及一般的空穴注入触点的电性能对于器件的工作也至关重要。

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