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Design and synthesis of phosphorescent iridium conaining dendrimers for potential applications in organic light-emitting diodes

机译:潜在用于有机发光二极管的磷光铱键合树枝状聚合物的设计与合成

摘要

Three phosphorescent dendrimers (IrC1, IrC3, and IrF2) with an iridium complex core and oligocarbazole or oligofluorene substituted ligands were synthesized and characterized. The structures of the oligocarbazole were designed to maintain high triplet energy of the ligands so that phosphorescence quenching in the resulting dendrimers can be prevented, while the oligofluorene in IrF2 resulted in undesired phosphorescence quenching. Best performance was obtained from an IrC3 based electrophosphorescent light-emitting device with a maximum luminance of 13 060 cd .m-2 at a driving voltage of 11.5 V and a peak current-efficiency of 4.3 cd .A-1 at a luminance of 3 400 cd .m-2, owing to its high PL efficiency, and efficient energy transfer between the iridium complex core and the ligands.
机译:合成并表征了具有铱配合物核心和低碳咔唑或低碳芴取代的配体的三种磷光树枝状聚合物(IrC1,IrC3和IrF2)。设计低聚咔唑的结构以维持配体的高三线态能量,从而可以防止所得树枝状聚合物中的磷光猝灭,而IrF2中的低芴导致不希望的磷光猝灭。从基于IrC3的电致磷光发光器件获得了最佳性能,其在11.5 V的驱动电压下的最大亮度为13060 cd .m-2,在3的亮度下的峰值电流效率为4.3 cd.A-1。 400 cd .m-2,由于其高PL效率以及铱配合物核与配体之间的有效能量转移。

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