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Synthesis and design of organic light emitting devices containing lanthanide cored complexes.

机译:含镧芯配合物的有机发光器件的合成与设计。

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There is considerable interest in the use of metal centered materials as a light source in the growing field of organic light emitting devices (OLED's). In these devices, a polymeric host matrix containing either a carbazole type polymer or polyfluorene derivatives is used to help facilitate energy transfer to the luminophore. We have shown that by using a gadolinium complex that consist of three equivalents of a chelated dibenzoylmethane b-diketone ligand and one equivalent of a phenanthroline type ligand as a component in the host matrix, the performance of a double layer type OLED is improved. We have studied OLED systems that contain tris chelated europium compounds that contain three equivalents of partially fluorinated β-diketone type ligands and an equivalent of a phenanthroline type ligand. In these devices, the external efficiency has shown a 30-fold increase. We have also shown there is an increase for Osmium based OLED's that use the gadolinium complex as part of the polymer matrix. In these devices, the maximum quantum efficiency increased from 2.1% to a value of 3.8%.
机译:在有机发光器件(OLED)的生长领域中,在使用金属中心材料作为光源存在相当大的兴趣。在这些装置中,使用含有咔唑型聚合物或多氟烯衍生物的聚合物宿主基质来帮助促进能量转移到发光体。我们已经表明,通过使用钆复合物组成的螯合二苯甲酰甲烷B-双酮配位体的三个当量和一当量的菲咯啉型配位体作为基质的成分的,双层型OLED的性能提高。我们研究了含有TRIS螯合铕化合物的OLED系统,其含有三当量的部分氟化β-二酮型配体和当量的菲咯啉型配体。在这些器件中,外部效率显示出30倍。我们还显示了锇基OLED的增加,该OLED可以作为聚合物基质的一部分使用钆复合物。在这些器件中,最大量子效率从2.1%增加到3.8%的值。

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