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Highly Branched Phosphorescent Dendrimers for Efficient Solution-Processed Organic Light-Emitting Diodes

机译:高效溶液处理有机发光二极管的高度支化的磷光树枝状聚合物

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Intermolecular interactions play a crucial role in the performance of organic light-emitting diodes (OLEDs). Here we report the photophysical and electroluminescence properties of a fac(c-tris(2-phenylpyridyl)iridium(Ⅲ) cored dendrimer in which highly branched biphenyl dendrons are used to control the intermolecular interactions. The presence of fluorene surface groups improves the solubility and enhances the efficiency of photoluminescence, especially in the solid state. The emission peak of the dendrimer is around 530 nm with a PL quantum yield of 76 % in solution and 25 % in a film. The photophysical properties of this dendrimer are compared with a similar dendrimer with the same structure but without the fluorene surface groups. Dendrimer LEDs (DLEDs) are prepared using each dendrimer as a phosphorescent emitter blended in a 4,4′-bis(N′-carbazolyl)bi-phenyl host. Device performance is improved significantly by the incorporation of an electron-transporting layer of l,3,5-tris(2-N-phenylbenzimidazolyl)benzene. A peak external quantum efficiency of 10 % (38 Cd A~(-1)) for the dendrimer without surface groups and 13 % (49.8 Cd A~(-1)) for the dendrimer with fluorene surface groups is achieved in the bilayer LEDs.
机译:分子间相互作用在有机发光二极管(OLED)的性能中起着至关重要的作用。在这里我们报告了一个fac(c-三(2-苯基吡啶基)铱(Ⅲ)核树枝状聚合物的光物理和电致发光性质,其中高度支化的联苯树枝状分子用于控制分子间的相互作用,芴表面基团的存在提高了溶解度和增强了光致发光的效率,特别是在固态状态下,树枝状大分子的发射峰在530 nm附近,溶液中PL量子产率为76%,薄膜的PL量子产率为25%。具有相同结构但不具有芴表面基团的树枝状大分子。通过将每个树枝状大分子作为磷光发射体掺入4,4'-双(N'-咔唑基)联苯主体中来制备树枝状大分子LED(DLED)。通过掺入1,3,5-三(2-N-苯基苯并咪唑基)苯的电子传输层可以显着提高树枝状大分子的外量子效率为10%(38 Cd A〜(-1))在双层LED中,具有芴表面基团的树枝状聚合物的表面基团达到13%(49.8 Cd A〜(-1))。

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