9-Phenyl-9-phosphafluorene oxide based organic ligands synthesized via successive SNAr reactions and their symmetric phosphorescent Ir(III) complexes for highly efficient solution-processed OLEDs

磷光 有机发光二极管 化学 亲核芳香族取代 光化学 配体(生物化学) 二苯并噻吩 量子效率 试剂 催化作用 电致发光 亲核取代 材料科学 物理化学 荧光 药物化学 有机化学 物理 图层(电子) 量子力学 生物化学 受体 光电子学
作者
Xuming Deng,Siqi Liu,Yuling Sun,Daokun Zhong,Dongming Jia,Xiaolong Yang,Bochao Su,Yuanhui Sun,Guijiang Zhou,Bo Jiao,Zhaoxin Wu
出处
期刊:Dyes and Pigments [Elsevier BV]
卷期号:209: 110885-110885 被引量:2
标识
DOI:10.1016/j.dyepig.2022.110885
摘要

Three organic ligands with 9-phenyl-9-phosphafluorene oxide (PhFlPO) group have been synthesized via successive nucleophilic aromatic substitution (SNAr) reactions between dibenzothiophene dioxides and PhPH2-KOH under mild reaction conditions at room temperature. In this way, the novel PhFlPO-type organic ligands can be easily obtained without either highly sensitive Grignard or organolithium reagents of noble metal catalysts. Using these PhFlPO-type organic ligands, cyclometalated Ir(III) phosphorescent complexes with PhFlPO groups have been developed through well-accepted two-step strategy. To the best of our knowledge, these complexes represent the unprecedented examples of symmetric cyclometalated Ir(III) phosphorescent complexes bearing PhFlPO group. It has been found that electron-density on the coordinated carbon atom in the PhFlPO unit can exert a significant influence on the metal-to-ligand charge transfer transition (MLCT) processes and phosphorescent emission behavior of these cyclometalated Ir(III) phosphorescent complexes. In addition, the electroluminescent potential of these new cyclometalated Ir(III) phosphorescent complexes with PhFlPO groups has been characterized in solution-processed organic light-emitting diodes (OLEDs). They can show very impressively high external quantum efficiency (ηext), current efficiency (ηL) and power efficiency (ηP) of 20.0%, 71.7 cd A−1 and 56.1 lm W−1, respectively. These encouraging research results can furnish critical information for developing new PhFlPO-based Ir(III) phosphorescent emitters.
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