首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A solution-processed bis-tridentate iridium(iii) complex-cored dendrimer for green OLEDs
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A solution-processed bis-tridentate iridium(iii) complex-cored dendrimer for green OLEDs

机译:用于绿色OLED的解决方案加工双特三叉铱(III)复合芯树枝状大分子

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We report the first example of a solution-processable dendronised bis-tridentate iridium(iii) complex composed of a bis(imidazolyl)phenyl ligand with a first-generation biphenyl dendron containing t-butyl surface groups and a 2-pyrazolyl-6-phenylpyridine co-ligand. The non-dendronised analogue and the dendrimer were found to emit green light. Both complexes were found to have a solution photoluminescence quantum yield [PLQY (phi)] of similar to 70% in toluene. The PLQY of both complexes was reduced in the neat film due to intermolecular quenching. However, the dendrimer retained a higher portion of its PLQY (phi = 22% versus 9%) in the neat film due to the dendrons partially shielding the emissive iridium(iii) complex at its core. The solid-state intermolecular interchromophore interactions of the dendronised complex were suppressed by blending with tris(4-carbazoyl-9-ylphenyl)amine (TCTA) and the PLQY increased to 65%. The non-dendronised material had insufficient solubility to enable it to be solution processed to form films of sufficient thickness and quality to be used as the emissive material in an organic light-emitting diode (OLED). In contrast, the dendronised complex was amenable to solution coating techniques and simple two-layer OLEDs comprising a neat dendrimer film or films with 10 wt% of the dendrimer in TCTA and an electron transport layer showed green emission with maximum external quantum efficiency of 4.5% and 10.7%, respectively.
机译:我们报告了可溶液处理的树枝状双三齿铱(iii)络合物的第一个例子,该络合物由双(咪唑基)苯基配体与第一代含叔丁基表面基团的联苯树枝状配体和2-吡唑基-6-苯基吡啶共配体组成。发现非树枝状类似物和树枝状大分子发出绿光。这两种配合物在甲苯中的溶液光致发光量子产率[PLQY(phi)]接近70%。由于分子间猝灭,两种配合物在纯膜中的PLQY均降低。然而,树状大分子在纯膜中保留了较高比例的PLQY(phi=22%,而phi=9%),这是因为树状大分子部分屏蔽了其核心的发射铱(iii)络合物。通过与三(4-咔唑基-9-苯基)胺(TCTA)混合,树状复合物的固态分子间相互作用被抑制,PLQY增加到65%。非树枝状材料的溶解度不足,无法通过溶液处理形成足够厚度和质量的薄膜,用作有机发光二极管(OLED)中的发射材料。相比之下,树状复合物易于溶液涂覆技术,简单的两层OLED(包括整洁的树状大分子薄膜或TCTA中含有10 wt%树状大分子的薄膜)和电子传输层显示绿色发射,最大外部量子效率分别为4.5%和10.7%。

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