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Synthesis of new iridium complexes and their electrophosphorescent properties in polymer light-emitting diodes

机译:聚合物发光二极管中新型铱配合物的合成及其电致磷光性能

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Several new iridium complexes with p-substituted 2-phenylpyridine (R-PPy) ligands have been synthesized and characterized. The complexes were incorporated into phosphorescent polymer light-emitting devices using soluble poly[1,4-bis(6'-cyano-6'-methylheptyloxy)phenylene] (CNPPP) as the host and the resultant materials compared with Ir(PPy)(3)-doped devices. Green electrophosphorescence was observed, with peak emission at about 495 and 515 nm. Among the devices fabricated, highly efficient polymer light-emitting diodes were obtained with CNPPP doped with fac-tris[2-(4-tert-butylphenyl)pyridinato]iridium. An external quantum efficiency of 4.4% (photoluminescence/electroluminescence) and a luminous efficiency of 10 cd A(-1) were obtained at 120 cd m(-2). These values remain at 4.2% and 10 cd A(-1), respectively, at 2500 cd m(-2). The improvement is attributed to improved interaction between the guest and host, and to better and more complete energy transfer from the host singlet to the guest triplet state. These results demonstrate that efficient electrophosphorescence is not limited to small molecule organic light-emitting diodes, it can also be achieved in devices made with polymer hosts. [References: 26]
机译:已经合成和表征了几种具有对位取代的2-苯基吡啶(R-PPy)配体的铱配合物。使用可溶的聚[1,4-双(6'-氰基-6'-甲基庚氧基)亚苯基](CNPPP)作为基质并将所得材料与Ir(PPy)( 3)掺杂的器件。观察到绿色电致磷光,峰值发射在约495和515 nm。在所制造的器件中,用掺杂有fac-三[2-(4-叔丁基苯基)吡啶并铱]的CNPPP获得了高效的聚合物发光二极管。在120 cd m(-2)处获得4.4%的外部量子效率(光致发光/电致发光)和10 cd A(-1)的发光效率。这些值分别保持在4.2%和10 cd A(-1),即2500 cd m(-2)。改善归因于来宾和主机之间更好的交互作用,以及从主机单重态到来宾三重态更好更好地完成了能量转移。这些结果表明,有效的电致磷光不仅限于小分子有机发光二极管,还可以在由聚合物主体制成的器件中实现。 [参考:26]

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