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Electroluminescence of doped organic thin films

机译:掺杂有机薄膜的电致发光

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Electroluminescent (EL) devices are constructed using multilayer organic thin films. The basic structure consists of a hole‐transport layer and a luminescent layer. The hole‐transport layer is an amorphous diamine film in which the only mobile carrier is the hole. The luminescent layer consists of a host material, 8‐hydroxyquinoline aluminum (Alq), which predominantly transports electrons. High radiance has been achieved at an operating voltage of less than 10 V. By doping the Alq layer with highly fluorescent molecules, the EL efficiency has been improved by about a factor of 2 in comparison with the undoped cell. Representative dopants are coumarins and DCMs. The EL quantum efficiency of the doped system is about 2.5, photon/electron. The EL colors can be readily tuned from the blue‐green to orange‐red by a suitable choice of dopants as well as by changing the concentration of the dopant. In the doped system the electron‐hole recombination and emission zones can be confined to about 50 A˚ near the hole‐transport interface. In the undoped Alq, the EL emission zone is considerably larger due to exciton diffusion. The multilayer doped EL structure offers a simple means for the direct determination of exciton diffusion length.
机译:电致发光 (EL) 器件使用多层有机薄膜构建。其基本结构由空穴和连字符传输层和发光层组成。空穴传输层是一种无定形的二胺膜,其中唯一的移动载体是空穴。发光层由主体材料 8&连字符羟基喹啉铝 (Alq) 组成,其主要传输电子。在低于 10 V 的工作电压下实现了高辐射。通过在Alq层中掺杂高荧光分子,与未掺杂的细胞相比,EL效率提高了约2倍。代表性掺杂剂是香豆素和DCM。掺杂体系的EL量子效率约为2.5%,光子/电子。EL颜色可以很容易地从蓝色&连字符绿色调整为橙色&连字符红色,通过选择合适的掺杂剂以及改变掺杂剂的浓度。在掺杂体系中,电子&连字符;空穴复合和发射区可以限制在空穴&连字符输运界面附近的约50 A&环内。在未掺杂的Alq中,由于激子扩散,EL发射区要大得多。多层掺杂EL结构为直接测定激子扩散长度提供了一种简单的方法。

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