Zhen Hongyu, Jiang Changyun, Yang Wei, Jiang Jiaxing, Huang Fei, Cao Yong
Institute of Polymer Optoelectronic Materials and Devices, Key Laboratory of Specially Functional Materials and Advanced Manufacturing Technology, South China University of Technology, Guangzhou 510640, China.
Chemistry. 2005 Aug 19;11(17):5007-16. doi: 10.1002/chem.200401090.
The synthesis of electrophosphorescent chelating polymers by Suzuki polycondensation of A-A- and B-B-type monomers is described, in which the fluorene-alt-carbazole (PFCz) segment is used as polymer backbone. By using alkyl-substituted ligands of iridium complex monomers, chelating copolymers with higher contents of iridium complex can be synthesized. Chemical and photophysical characterization confirm that the Ir complex is incorporated into the polymer backbone as one of the monomer repeat units by means of two 5-bromotolylpyridine ligands. Chelating polymers with Ir complexes in the conjugated polymer backbone show highly efficient energy transfer of excitons from the PFCz host segment to the Ir complex by an intramolecular trapping mechanism. The external quantum and luminous efficiencies of a device made with PFCzMppyIrhm4 copolymer reach 4.1 % ph/el (photons/electron) and 5.4 cd A(-1), respectively, at a current density of 32.2 mA cm(-2), an emission peak of 577 nm, and a luminance of 1730 cd cm(-2). Most important, the devices made from the chelating copolymers show no notable efficiency decay with increasing current density due to reduced concentration quenching and triplet-triplet (T-T) annihilation. This indicates that incorporation of the phosphorescent complex into the rigid conjugated polymer main chain is a new way to simultaneously realize high efficiency, long-term stability, and simple processing of phosphorescent polymer light-emitting diodes.
描述了通过A-A型和B-B型单体的铃木缩聚反应合成电磷光螯合聚合物的方法,其中芴-alt-咔唑(PFCz)链段用作聚合物主链。通过使用铱配合物单体的烷基取代配体,可以合成具有更高铱配合物含量的螯合共聚物。化学和光物理表征证实,铱配合物通过两个5-溴甲苯基吡啶配体作为单体重复单元之一并入聚合物主链中。在共轭聚合物主链中含有铱配合物的螯合聚合物通过分子内捕获机制显示出从PFCz主体链段到铱配合物的激子高效能量转移。由PFCzMppyIrhm4共聚物制成的器件在电流密度为32.2 mA cm(-2)、发射峰为577 nm、亮度为1730 cd cm(-2)时,外量子效率和发光效率分别达到4.1 % ph/el(光子/电子)和5.4 cd A(-1)。最重要的是,由螯合共聚物制成的器件由于浓度猝灭和三重态-三重态(T-T)湮灭的减少,在电流密度增加时没有明显的效率衰减。这表明将磷光配合物掺入刚性共轭聚合物主链是同时实现磷光聚合物发光二极管的高效率、长期稳定性和简单加工的一种新方法。