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新型苯基吡唑铱(Ⅲ)配合物的合成及光物理性能研究 总被引:1,自引:0,他引:1
合成了4种新型铱配合物(ppz)2Ir(LX)(ppz=1-苯基吡唑,LX=2-(2’-羟基苯基)苯并噻唑(BTZ),2-(3’-甲基-2’-羟基苯基)苯并噻唑(3-MeBTZ),2-(4’-甲基-2’-羟基苯基)苯并噻唑(4-MeBTZ),2-(4’-三氟甲基-2’-羟基苯基)苯并噻唑(4-TfmBTZ)),并对其分子结构和光物理性能进行了表征。结果表明,4种配合物的最大发光峰分布在583~615 nm,并都在400 nm左右出现一个弱发射带。400 nm的弱发射被认为是金属离子微扰的辅助配体BTZ的单重态激子的辐射跃迁,长波段的光发射被认为是Ir(BTZ)的3MLCT三重态激子的辐射跃迁。而Ir(ppz)2的3MLCT的三重态激子在室温下被猝灭。最强激发带位于250~310 nm,表明这些配合物的发射主要源于ppz和BTZ配体的跃迁,而不是3MLCT跃迁。与Ir(ppz)3相比,不仅实现了室温磷光,也通过第二配体的修饰实现了对发光颜色的调制。 相似文献
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Fine-tuning the thicknesses of organic layers to realize high-efficiency and long-lifetime blue organic light-emitting diodes
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By using p-bis(p-N,N-diphenyl-aminostyryl)benzene doped 2-tert-butyl-9,10-bis-β-naphthyl)-anthracene as an emitting layer,we fabricate a high-efficiency and long-lifetime blue organic light emitting diode with a maximum external quantum efficiency of 6.19% and a stable lifetime at a high initial current density of 0.0375 A/cm2.We demonstrate that the change in the thicknesses of organic layers affects the operating voltage and luminous efficiency greater than the lifetime.The lifetime being independent of thickness is beneficial in achieving high-quality full-colour display devices and white lighting sources with multi-emitters. 相似文献
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