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Efficient and Color-tunable Organic Light-emitting Diodes for Rear Light Application on the Motor Vehicle

机译:用于在机动车上进行后光应用的高效和可调性的有机发光二极管

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By designing double emissive layers, orange light-emitting layer (EML) and red EML and a space layer of blending hole-transporting material (HTM) with electron-transporting material (ETM), we have achieved efficient and colortunable organic light-emitting diodes (OLEDs). It is found that the red shift of EL spectrum was enhanced when the ratio of HTM to ETM was 5:1. And a maximum current efficiency of 41.17 cd/A was reached. It has been demonstrated that two ultra-thin emissive layers could improve the current efficiency of the OLEDs. The current efficiency of the OLEDs with a 1 nm o;6range EML and a 1 nm red EML was enhanced by 27.4 % as compared to the reference devices. This is a novel approach to realizing voltage-controlled electroluminescence (EL) over different colors and intensity in a single OLED. The color-tunable OLEDs show the potential to be utilized as rear light on motor vehicle. We have investigated the effect of the ratio of HTM to ETM on the efficiency and spectral shift of the OLEDs through the control of recommendation zone.
机译:通过设计双发光层,橙色发光层(EML)和红色EML和具有电子传输材料(ETM)的混合空穴传输材料(HTM)的空间层,我们实现了高效和结肠有机发光二极管(OLED)。发现当HTM与EtM的比例为5:1时,提高了EL光谱的红色移位。和达到41.17cd / a的最大电流效率。已经证明,两个超薄发光层可以提高OLED的电流效率。与参考装置相比,具有1nm O的电流效率为1nm O; 6Range EML和1nM红色EML的增强27.4%。这是一种新的方法来实现在单个OLED中不同颜色和强度的电压控制的电致发光(EL)。颜色可调OLED显示在机动车上用作后灯的电位。我们研究了HTM与ETM的效果通过推荐区的控制来对OLED的效率和光谱偏移的影响。

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