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具有减少自猝灭效果的铱配合物掺杂型红色聚合物磷光器件
引用本文:徐茂梁,安忠维,王歌扬,周瑞,肖奇,李明涛,李文连,洪自若.具有减少自猝灭效果的铱配合物掺杂型红色聚合物磷光器件[J].发光学报,2011,32(11):1181-1185.
作者姓名:徐茂梁  安忠维  王歌扬  周瑞  肖奇  李明涛  李文连  洪自若
作者单位:1. 西安近代化学研究所, 陕西 西安 710065; 2. 中国科学院 长春光学精密机械与物理研究所, 吉林 长春 130033
基金项目:Supported by the Key Programs for Science and Technology Development of Shaanxi Province(2006kz03-G3); The Innovation Research Project of Xi'an Modern Chemistry Research Institute(MPKFJJ08856)~~
摘    要:将双(2-(2'-苯并 噻吩基)-5-三氟甲基吡啶)乙酰丙酮合铱配合物 及电子传输材料PBD掺杂到基质材料PVK中,利用旋涂的方法制备聚合物磷光器件。铱配合物的掺杂质量分数分别为8%、10%、15%及18%,当掺杂质量分数为15%时获得了最大外量子效率4.5%,而同样结构的经典的红光材料(btp)2Ir(acac)的掺杂质量分数为4%时最大外量子效率为3.3%。可以看出,含三氟甲基的新铱配合物制备的聚合物器件具有明显的减少浓度猝灭效果,这可能由于三氟甲基基团改变了分子堆积状态,减少了分子间相互作用的结果。该聚合物器件最大发射峰位648 nm,色坐标为(0.71,0.29), 没有PVK的蓝光发射峰。

关 键 词:聚合物磷光器件  红色电致磷光  有机电致发光器件
收稿时间:2011-08-16

Red Polymer Electrophosphorescent Devices Based on Iridium Complex with Reduced Self-quenching Effect
XU Mao-liang,AN Zhong-wei,WANG Ge-yang,ZHOU Rui,XIAO Qi,LI Ming-tao,LI Wen-lian,HONG Zi-ruo.Red Polymer Electrophosphorescent Devices Based on Iridium Complex with Reduced Self-quenching Effect[J].Chinese Journal of Luminescence,2011,32(11):1181-1185.
Authors:XU Mao-liang  AN Zhong-wei  WANG Ge-yang  ZHOU Rui  XIAO Qi  LI Ming-tao  LI Wen-lian  HONG Zi-ruo
Institution:1. Xi'an Modern Chemistry Research Institute, Xi'an 710065, China; 2. Key Laboratory of Excited State processes, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China
Abstract:A highly efficient red-emitting phosphorescent polymer light-emitting diode (Ph-PLED) with a new iridium complex of bis(2-benzo thiophen-2-yl-5-trifluoromethyl-pyridinato-N,C3) iridium(Ⅲ) (acetylacetonate) using poly (n-vinylcarbazole) (PVK) as host material was demonstrated. The PLED offers a maximum external quantum efficiency of 4.5% with an emission peak of 648 nm. The CIE coordinates are (0.71,0.29) and independent from driving current density, indicating an efficient reduction of self-quenching effect at high doping concentrations.
Keywords:PLEDs  red electrophosphorescence  OLEDs  
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