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Phosphorescent iridium(III) cored dendrimers for light-emitting displays

机译:磷光铱(III)核树枝状聚合物,用于发光显示器

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Solution-processable electrophosphorescent dendrimers are an emerging class of materials for highly efficient light-emitting diodes. Here, we report time-resolved photoluminescence measurements in a fac-tris(2-phenylpyridyl)iridium(III) [Ir(ppy)_3]-cored dendrimer in neat film and blended into a 4,4'-bis(N-carbazolyl)biphenyl (CBP) host. Our results identify the existence of a photodegradation process that occurs in solution prior to processing, which significantly affects the photoluminescence kinetics of the films and leads to lower external quantum efficiencies of solution-processed phosphorescent dendrimer light-emitting displays. In parallel, we studied the triplet-triplet exciton annihilation processes in these materials from the photoluminescence decays measured at various excitation densities. From the values of the annihilation rates, we calculated the triplet exciton diffusion lengths and estimated the limiting current densities above which annihilation would dominate in phosphorescent dendrimer light-emitting devices. The results show that the triplet exciton diffusion length is small ( < 15 nm) in phosphorescent dendrimers and that exciton diffusion becomes still slower in the blends, which can be interpreted by the intermolecular spacing between the phosphorescent emitters being increased, thus reducing the annihilation rate.
机译:可溶液处理的电致发光树状大分子是用于高效发光二极管的新兴材料类别。在这里,我们报告在纯膜中以fac-tris(2-苯基吡啶基)铱(III)[Ir(ppy)_3]核树枝状大分子并混入4,4'-双(N-咔唑基)中的时间分辨光致发光测量联苯(CBP)宿主。我们的结果确定了在加工之前在溶液中发生的光降解过程的存在,这会显着影响薄膜的光致发光动力学,并导致溶液加工的磷光树枝状聚合物发光显示器的外部量子效率降低。平行地,我们从在各种激发密度下测得的光致发光衰减研究了这些材料中的三重态-三重态激子an灭过程。从the灭率的值,我们计算了三重态激子扩散长度,并估计了极限电流密度,在此极限电流密度下,phosphor灭将在磷光树枝状聚合物发光器件中占主导地位。结果表明,在磷光树枝状聚合物中,三重态激子扩散长度很小(<15 nm),并且共混物中的激子扩散变得仍然较慢,这可以解释为磷光发射体之间的分子间间距增加,从而降低了reducing灭率。

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