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首页> 外文期刊>Journal of nonlinear optical physics & materials >COLOR TUNABLE ELECTROLUMINESCENCE FROM ORGANIC LIGHT-EMITTING DEVICES BY MANIPULATING EXCITON AND EXCIPLEX EMISSIONS
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COLOR TUNABLE ELECTROLUMINESCENCE FROM ORGANIC LIGHT-EMITTING DEVICES BY MANIPULATING EXCITON AND EXCIPLEX EMISSIONS

机译:通过操纵激子和激发发射,从有机发光器件产生彩色可调谐电致发光

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摘要

While exciplex formation is considered to have a negative impact on the performance of organic light-emitting devices (OLEDs), it can be utilized as a simple means for manipulating the emission colors. Here, we explore various important factors influencing the exciplex formation in order to provide a simple way for tailoring the emission color of OLEDs involving exciplex emission. In addition to the well-known effects of the energy difference between electron affinity and ionization potential (I-P) of organic materials used, we found that electron mobility and I-P of electron-transporting layer (ETL) are also critical factors in controlling the intensity of exciplex emission via the influence on charge accumulation intensity at the organic/organic interface. Interestingly, devices with green, blue, and white electroluminescence colors can be attained by simply replacing different ETL materials in contact with the same blue fluorophore underneath. The underlying mechanism for the color change in OLEDs will be discussed.
机译:虽然激基复合物的形成被认为对有机发光器件(OLED)的性能具有负面影响,但是它可以用作操纵发射颜色的简单手段。在这里,我们探索各种影响激基复合物形成的重要因素,以便为定制涉及激基复合物发射的OLED的发射颜色提供简单的方法。除了众所周知的电子亲和力与所用有机材料的电离电势(IP)之间的能量差的影响外,我们还发现电子迁移层(ETL)的电子迁移率和IP也是控制电子强度的关键因素。激基复合物发射通过影响有机/有机界面上电荷积累强度而产生。有趣的是,只需将不同的ETL材料替换为与下面的相同蓝色荧光团接触,就可以得到具有绿色,蓝色和白色电致发光颜色的设备。将讨论OLED中颜色变化的基本机制。

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