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首页> 外文期刊>RSC Advances >Efficient donor-acceptor emitter based nonsymmetrical connection for organic emitting diodes with improving exciton utilization
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Efficient donor-acceptor emitter based nonsymmetrical connection for organic emitting diodes with improving exciton utilization

机译:基于有机发射二极管的高效供体发射器,具有改善激子利用率

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A new strategy developed to construct blue emissive materials having an unsymmetrical connection with identical conjugated phenanthrimidazole groups results in the separation of the frontier orbitals and leads to donor-acceptor (D-A) architecture. The blue device with 2-(naphthalen-1-yl)-1-(4-(1-(naphthalen-1-yl)-1H-phenanthro[9,10-d]imidazol-2-yl)phenyl)-1H-phenanthro[9,10-d]imidazole (p-PPI)/2-(naphthalen-1-yl)-1-(3-(1-(naphthalen-1-yl)-1H-phenanthro[9,10-d]imidazol-2-yl)phenyl)-1H-phenanthro[9,10-d]imidazole (m-PPI) emissive layer (lambda(EL) - 434/420 nm) shows high efficiencies: current efficiency (eta(c)) - 5.83/3.56 cd A(-1); power efficiency (eta(p)) - 5.73/3.48 lm W-1; external quantum efficiency (eta(ex)) - 8.98/6.48% at 3.0 V. Their cyano derivatives, p-CNPPI/m-CNPPI (lambda(EL) - 422/406 nm) exhibit maximum efficiencies (eta(c) - 6.28/4.38 cd A(-1); eta(p) - 6.14/4.01 lm W-1; eta(ex) - 9.01/6.72%) at 2.9 V compared to the p-PPI/m-PPI devices. The weak charge transfer in the D-A emitters results in deep blue emission. The anisotropic structural characteristics of p-PPI, p-CNPPI, m-PPI and m-CNPPI induced horizontal dipole orientation in films and enhanced EL efficiency. These bipolar materials with suitable triplet energy can be used as hosts in green as well as red phosphorescent organic light emitting devices (PHOLEDs). The green/red device (lambda(EL) - 504/618 nm) with p-CNPPI: Ir(ppy)(3)/Ir(MDQ)(2) (acac) exhibits a maximum L - 8823/38418 cd m(-2); eta(ex) - 24.56/17.31%; eta(c) - 84.30/18.09 cd A (-1); eta(p) - 86.43/21.43 lm W (-1)with CIE (0.33, 0.61)/(0.65, 0.34).
机译:开发的新策略构建与相同的共轭菲咪唑基团具有不对称连接的蓝色发光材料导致前轨道的分离并导致供体 - 受体(D-A)架构。具有2-(萘-1-基)-1-(4-(1-(萘-1-基)-1H-菲[9,10-D]咪唑-2-基2-y1]苯基)的蓝色装置-1h)-1h -phenanthro [9,10-d]咪唑(ppi)/ 2-(萘-1-基)-1-(3-(1-(萘-1-基)-1h-phenanthro [9,10- D]咪唑-2-基)苯基)-1H-菲[9,10-D]咪唑(M-PPI)发光层(Lambda(EL) - 434/420nm)显示出高效率:电流效率(ETA(C ))) - 5.83 / 3.56 CD A(-1);功率效率(ETA(P)) - 5.73 / 3.48 LM W-1;外部量子效率(ETA(ex)) - 8.98 / 6.48%在3.0 V.它们的氰基衍生物,P-CNPPI / M-CNPPI(Lambda(EL) - 422/406nm)表现出最大效率(ETA(C) - 6.28 /4.38 CD A(-1); ETA(P) - 6.14 / 4.01 LM W-1;与P-PPI / M-PPI器件相比,ETA(EX) - 9.01 / 6.72%。 D-A发射器中的弱电荷转移导致深蓝色排放。对PPI,对 - CNPPI,间PPI和间CNPPI的各向异性结构特点诱导膜水平偶极子定向和增强EL效率。具有合适的三重态能量的这些双极材料可用作绿色的主体以及红色磷光有机发光器件(Pholeds)。具有P-CNPPI的绿色/红色装置(Lambda(EL) - 504/618nm):IR(PPY)(3)/ IR(MDQ)(2)(ACAC)展示最大L - 8823/38418 CD M( -2); ETA(前) - 24.56 / 17.31%; ETA(c) - 84.30 / 18.09 CD A(-1); ETA(P) - 86.43 / 21.43 LM W(-1)CIE(0.33,0.61)/(0.65,0.34)。

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