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首页> 外文期刊>ACS Omega >Regulation of Singlet and Triplet Excitons in a Single Emission Layer: Efficient Fluorescent/Phosphorescent Hybrid White Organic Light-Emitting Diodes
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Regulation of Singlet and Triplet Excitons in a Single Emission Layer: Efficient Fluorescent/Phosphorescent Hybrid White Organic Light-Emitting Diodes

机译:单线态和三线态激子在单个发射层中的调节:高效的荧光/磷光杂化白色有机发光二极管

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Two efficient fluorescent molecules, viz., (E)-2-(2-4-(1-2,3-dihydrobenzo[b][1,4]dioxin-5-yl)-4,5-diphenyl-H-imidazole-2-yl)-[1,1-biphenyl]-4-yl)vinyl-1-yl(naphthalene-1-yl)-1H-phenanthro[9,10-d]imidazole (DDIBNPPI) and (E)-4-(2-(2-(-4′-1(2,3-dihyderobenzo[b][1,4]dioxin-5-yl)-4,5-diphenyl-1H-imidazole-2-yl)-[1,1′-biphenyl]-4-yl)vinyl)-1H-phenanthr[9,10-d]imidazole-1-yl)-1-napthronitrile (DDIBPPIN), were designed and synthesized. DDIBNPPI and DDIBPPIN were obtained by rupturing the covalent bond of phenanthrimidazole core to prevent aggregation-induced quenching. In DDIBPPIN, naphthonitrile group was incorporated into azomethine nitrogen of phenanthrimidazole to enhance charge-transfer ability. The DDIBPPIN/CBP:DDIBPPIN-based device shows blue emission with ηc (current efficiency) of 4.91/4.10 cd/A, ηp (power efficiency) of 4.56/3.84 lm/W, and ηex (external quantum efficiency) of 5.11/5.96%. The ηs (exciton utilization efficiency) values of DDIPNPPI and DDIBPPIN are of 27.0 and 30.3%, respectively. The DDIPNPPI and DDIBPPIN materials employed as a host to fabricate green and red phosphorescent organic light-emitting diodes. The red/white devices (with 0.4% dopant concentration) with DDIBPPIN:Ir(MDQ)2(acac) exhibit maximum L of 69889/26319 cd/m2, ηex of 19.6/16.6%, ηc of 34.6/35.6 cd/A, and ηp of 35.8/36.6 lm/W. The device with DDIBPPIN:Ir(ppy)3/DDIPNPPI:Ir(ppy)3 exhibits green emission [Commission Internationale de l’Eclairage (0.30,0.60)/(0.30,0.60)] with maximum L of 69906/69482 cd/m2, ηex of 17.9/17.0%, ηc of 59.8/58.6 cd/A, and ηp of 63.6/61.3 lm/W. The white device using DDIBPPI:Ir(ppy)3 (with 0.4% dopant concentration) exhibits maximum L of 22152 cd/m2, ηex of 15.8%, ηc of 31.4 cd/A, and ηp of 36.1 lm/W.
机译:两个有效的荧光分子,即(E)-2-(2-4-(1-2,3-二氢苯并[b] [1,4]二恶英-5-基)-4,5-二苯基-H-咪唑-2-基)-[1,1-联苯基] -4-基)乙烯基-1-基(萘-1-基)-1H-菲基[9,10-d]咪唑(DDIBNPPI)和(E) -4-(2-(2-(-4′-1(2,3-二氢苯并[b] [1,4]二恶英-5-基] -4,5-二苯基-1H-咪唑-2-基))设计并合成了[[[1,1'-联苯] -4-基)乙烯基)-1H-菲[9,10-d]咪唑-1-基)-1-萘腈(DDIBPPIN)。 DDIBNPPI和DDIBPPIN是通过破坏菲啶咪唑核心的共价键来防止聚集诱导的猝灭而获得的。在DDIBPPIN中,将萘腈基团结合到菲啶咪唑的偶氮甲基氮中以增强电荷转移能力。基于DDIBPPIN / CBP:DDIBPPIN的设备显示蓝色发射,ηc(电流效率)为4.91 / 4.10 cd / A,ηp(功率效率)为4.56 / 3.84 lm / W,ηex(外部量子效率)为5.11 / 5.96 %。 DDIPNPPI和DDIBPPIN的ηs(激子利用效率)值分别为27.0%和30.3%。 DDIPNPPI和DDIBPPIN材料用作制造绿色和红色磷光有机发光二极管的主体。具有DDIBPPIN:Ir(MDQ)2(acac)的红色/白色器件(掺杂浓度为0.4%)最大L值为69889/26319 cd / m2,ηex为19.6 / 16.6%,ηc为34.6 / 35.6 cd / A,和ηp为35.8 / 36.6 lm / W。带有DDIBPPIN:Ir(ppy)3 / DDIPNPPI:Ir(ppy)3的设备显示绿色发光[国际照明委员会(0.30,0.60)/(0.30,0.60)],最大L为69906/69482 cd / m2 ,ηex为17.9 / 17.0%,ηc为59.8 / 58.6 cd / A,ηp为63.6 / 61.3 lm / W。使用DDIBPPI:Ir(ppy)3(掺杂浓度为0.4%)的白色器件的最大L值为22152 cd / m2,ηex为15.8%,ηc为31.4 cd / A,ηp为36.1 lm / W。

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