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首页> 外文期刊>Journal of Applied Physics >Efficient green polymer light-emitting diodes with microcavity effect in electroluminescence spectrum but constant quantum efficiency
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Efficient green polymer light-emitting diodes with microcavity effect in electroluminescence spectrum but constant quantum efficiency

机译:在电致发光光谱中具有微腔效应但量子效率恒定的高效绿色聚合物发光二极管

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We report the efficient green polymer light-emitting diodes (LEDS) that exhibit a strong microcavity effect in the electroluminescence (EL) spectrum. The LEDs employ a double-layer structure, with poly-(3,4-ethylenedioxythiophene): polystyrene sulfonic acid as the hole-transporting layer and with a highly efficient polyfluorene-based green-emitting polymer as the electron-transporting and emitting layer. The EL spectra of the LEDs demonstrate a strong resonance effect with the thickness of the emitting layer varying from 30 to 280 nm. The turn-on voltage of the device increases with the increasing thickness of the emitting layer. However, the brightness and especially the external quantum efficiency of the devices are largely independent of the thickness from 100 to 280 nm, when the emitting layer is thick enough to avoid cathode quenching of the electroluminescence. (C) 2004 American Institute of Physics.
机译:我们报告了高效的绿色聚合物发光二极管(LEDS),在电致发光(EL)光谱中显示出强大的微腔效应。 LED采用双层结构,其中聚-(3,4-乙撑二氧噻吩):聚苯乙烯磺酸作为空穴传输层,而高效的聚芴基绿色发光聚合物作为电子传输和发射层。 LED的EL光谱显示出强烈的共振效应,发光层的厚度在30到280 nm之间变化。器件的开启电压随着发光层厚度的增加而增加。然而,当发光层足够厚以避免电致发光的阴极猝灭时,器件的亮度,尤其是外部量子效率在很大程度上与100至280nm的厚度无关。 (C)2004美国物理研究所。

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