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一种白光有机电致发光器件的制备 总被引:7,自引:4,他引:7
通过对器件结构的优化设计,提高了白光电致发光器件中蓝光成分的发光效率,从而得到了一种较为理想的有机白光电致发光器件。驱动电压为5V时,电流密度J=0.5mA/cm^2,器件的效率达到最大,流明效率为1.92 lm/W,此时器件的发光亮度接近20cd/m^2。色坐标为(x=O.317,y=0.328)。非常接近白光等能点.是色度很好的白光。并且在很大范围内,色度随器件的驱动电压或电流变化不大,当驱动电压变化至15V时。f=232mA/cm^2,色坐标变化至(x=0.338,y=O.353)。在电压为22V时,器件的亮度达到最大,为17 000cd/m^2。此外器件结构相对简单。器件制备的可重复性得到很大程度的改善。 相似文献
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利用LiF/Al作为电极的有机电致发光器件 总被引:6,自引:2,他引:4
本文报道了利用LiF/Al作为负电极的有机电致发光器件,器件结构为ITO/TPD/Alq3/LiF/Al,LiF层的加入增强了电子注入,当其厚度为0.4nm时,器件的性能最好,与单层Al和Mg/Al电极的同类器件相比,此时器件的开启电压由Al电极时的4.3V和Mg/Al电极时的3.0V降低到了2.0V,器件的最大亮度分别由4000cd/m2、14000cd/m2提高到19600cd/m2,器件的发光效率也分别增加了5倍和2倍,达到2.66lm/W. 相似文献
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Realization of Red-Organic-Light Emitting Diode by Introducing the Double Emitting Zone 总被引:2,自引:0,他引:2 下载免费PDF全文
A saturated red-organic-light emitting diode (OLED) has been realized by doping an emitting material both in the hole-transporting layer (HTL) and the electron-transporting layer (ETL) to form double emitting zone. The red dopant, 4-(Dicyanomethylene)-2-t-butyl-6-(1,1,7,7-tetramethyljulolidyl-9-enyl)-4H-pyran (DCJTB), was doped into the N,N′-bis-(1-naphthyl)-N,N′-diphenyl-1,1′-biphenyl-4,4′-diamine (NPB) layer and the tris (8-quinolinolate) aluminium (Alq3) layer, both of which act as the emitting layers. The optimal device, with a structure of ITO/CuPc/NPB/NPB:DCJTB/Alq3:DCJTB/Alq3/LiF/Al, showed good chromaticity coordinates (x = 0.63,y = 0.36) at 8 V. Uniquely, the current efficiency of the device was relatively independent of the drive voltage in a wide range from 8 V to 20 V. That may be helpful to ameliorate the lifetime of the organic electrol,Jmlnescent devices and to adjust the grey-scale for the future full-colour display panel. 相似文献
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Top-Emitting Organic Light-Emitting Devices Based on Silicon Substrate with High Luminance and Low Turn-on Voltage 下载免费PDF全文
We have fabricated a top-emitting organic light-emitting device on silicon substrate with high yellow luminance based on 5,6,11,12-tetraphenylnaphthacene sub-monolayer. It consists of a thin layer of highly conductive silver as the semitransparent cathode and surfaced-modified Ag as the anode. The device turns on at 3 V with the luminance of 8.4 cd/m^2. The maximum current efficiency is 1.3 cd/A at 6 V and the luminance reaches 14790 cd/m^2 at 14 V. The performance of the device is excellent in top-emitting organic light-emitting devices according to our knowledge. 相似文献
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硅片上顶发射的有机电致发光器件 总被引:2,自引:0,他引:2
为了更好地实现有机发光器件在硅片上的有源矩阵显示,有必要探讨在硅片上直接制作透明阴极的顶发射有机发光器件。在顶发射发光器件中,为了到达高的发光效率,底部阳极一般采用高反射率的金属。在通常所用的各种金属当中,金属银对可见光具有很高的反射率,然而由于其具有相当低的功函数,导致与有机材料间能级的不匹配,从而引起有机发光器件中阳极空穴注入的不理想而影响器件的性能。我们在硅片上制备顶发射的有机发光器件,用薄层QAD(quinacridone)作为发光层,表面修饰的银作为阳极,制备的有机发光器件的亮度在外加电压10V时达到13700cd/m^2,器件的最大电流效率在7V时达到4.3cd/A,是没有薄层QAD器件的2倍多,是由在器件中存在Alq3与QAD之间Foester能量转移机制引起的。 相似文献