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Electroluminescent characteristics of organic light emitting devices by close-spaced sublimation

机译:近距离升华有机发光器件的电致发光特性

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摘要

We have demonstrated organic light emitting diodes by using a close spaced sublimation method. Small molecular electron transporting layers of BAIq and TAZ were investigated for improving device performance by using close-spaced sublimation method. It was found that device with an electron transporting layer of TAZ exhibits a better performance compare to BAIq. The white organic light emitting diodes with an ITO/PVK:Ir(piq)(3):FIrpic/TAZ/Li/Al structure is chosen as a device with different doping concentration of Flrpic emission materials. The PVK, Ir(piq)(3) and Flrpic organic materials as the host and guest emission materials were spin coated at various concentration of Flrpic ranging from 1wt% to 10 wt%. The maximum luminance and current efficiency were 1037 cd/m(2) and 3.26 cd/A, for white organic light emitting diodes with 10 wt% of Flrpic. The white light, with a Commission Internationale d'Eclairage chromaticity coordinates of (0.38, 0.36), is obtained with an applied voltage of 16V, showing a good white emission color for the 10 wt% of Flrpic device.
机译:我们已经通过使用近距离升华方法展示了有机发光二极管。研究了BAIq和TAZ的小分子电子传输层,通过近距离升华方法改善了器件性能。发现与TAIq相比,具有TAZ的电子传输层的器件表现出更好的性能。选择具有ITO / PVK:Ir(piq)(3):FIrpic / TAZ / Li / Al结构的白色有机发光二极管作为具有不同掺杂浓度的Flrpic发光材料的器件。将PVK,Ir(piq)(3)和作为主体和客体发射材料的Flrpic有机材料旋涂成各种浓度范围为1wt%至10 wt%的Flrpic。对于具有10 wt%Flrpic的白色有机发光二极管,最大亮度和电流效率为1037 cd / m(2)和3.26 cd / A。在16V的施加电压下,获得国际照明委员会色度坐标为(0.38,0.36)的白光,对于Flrpic器件的10 wt%,显示出良好的白色发射色。

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