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碳酸铯修饰Al作为反射阴极的倒置顶发射OLED器件 被引量:5
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作者 张浩 王立 +4 位作者 容佳玲 曹进 张志林 蒋雪茵 张建华 《发光学报》 EI CAS CSCD 北大核心 2012年第6期611-615,共5页
以Cs2CO3修饰的Al电极作为反射阴极制备了高效倒置顶发射结构有机电致发光器件(ITOLED)。以八羟基喹啉铝(Alq3)作为发光层、MoO3修饰的Ag为半透明阳极时,器件的开启电压为3.6 V,发光效率和功率效率分别达到9.8 cd/A和3.4 lm/W。研究结... 以Cs2CO3修饰的Al电极作为反射阴极制备了高效倒置顶发射结构有机电致发光器件(ITOLED)。以八羟基喹啉铝(Alq3)作为发光层、MoO3修饰的Ag为半透明阳极时,器件的开启电压为3.6 V,发光效率和功率效率分别达到9.8 cd/A和3.4 lm/W。研究结果表明,Al/Cs2CO3为反射阴极的器件性能明显高于使用Mg∶Ag(4.2 V,8.6 cd/A,2.85 lm/W)和Al(5 V,5.5 cd/A,1.57 lm/W)作为反射阴极的倒置顶发射OLED器件。单电子器件研究结果证明,以Cs2CO3修饰的Al电极功函数明显低于Mg∶Ag和Al电极,具有更好的电子注入效果。因此,除去微腔效应外,Al/Cs2CO3为反射电极的ITOLED器件性能的提高主要归因于Al/Cs2CO3阴极的有效电子注入。 展开更多
关键词 有机电致发光 Cs2CO3 倒置顶发射 电子注入
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硅基倒置型顶发射有机发光二极管(英文)
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作者 陈树明 袁永波 +1 位作者 连加荣 周翔 《电子器件》 CAS 2008年第1期33-35,39,共4页
利用n型硅作为阴极制备了倒置型顶发射有机发光二极管。通过在n-Si阴极和电子传输层(Alq3)之间插入1nm厚的Ba作为电子注入层,将器件的开启电压从20V降低到9V,并且将器件的效率提高了13倍。器件性能的提高主要是因为1nm厚的Ba有效的降低... 利用n型硅作为阴极制备了倒置型顶发射有机发光二极管。通过在n-Si阴极和电子传输层(Alq3)之间插入1nm厚的Ba作为电子注入层,将器件的开启电压从20V降低到9V,并且将器件的效率提高了13倍。器件性能的提高主要是因为1nm厚的Ba有效的降低了电子注入的势垒。 展开更多
关键词 硅基 倒置型 顶发射 有机发光二极管
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Low Temperature DC Sputtering Deposition on Indium-Tin Oxide Film and Its Application to Inverted Top-emitting Organic Light-emitting Diodes 被引量:1
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作者 Hui LIN Junsheng YU Shuangling LOU Jun WANG Yadong JIANG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2008年第2期179-182,共4页
Indium tin oxide (ITO) ultrathin films were prepared on glass substrate by DC (direct current) magnetron sputtering technique with the assistance of H2O vapor to avoid potential surface damage. The film properties... Indium tin oxide (ITO) ultrathin films were prepared on glass substrate by DC (direct current) magnetron sputtering technique with the assistance of H2O vapor to avoid potential surface damage. The film properties were characterized by X-ray diffraction (XRD) technique, four-point probe method and spectrophotometer. The results show that the deposited ITO film with introduced H2O during sputtering process was almost amorphous. The average visible light transmission of 100 nm ITO film was around 85% and square resistivity was below 80 Ω/square. The film was used as the transparent anode to fabricate an inverted top-emitting organic light-emitting diodes (IT-OLEDs) with the structure of glass substrate/Alq3 (40 nm)/NPB (15 nm)/CuPc (x nm)/ITO anode (100 nm), where the film thickness of CuPc was optimized. It was found that the luminance of this IT-OLEDs was improved from 25 cd/m^2 to more than 527 cd/m^2 by increasing the thickness of CuPc, and luminance efficiency of 0.24 lm/W at 100 cd/m^2 was obtained, which indicated that the optimized thickness of CuPc layer was around 15 nm. 展开更多
关键词 inverted top-emitting organic light-emitting diodes INDIUM-TIN-OXIDE Ultrathin film DC sputtering
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