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Novel beta-diketonate complexes of Eu3+ bearing pyrazole moiety for bright photo- and electroluminescence

机译:Eu3 +轴承吡唑部分的新型β-二酮络合物,用于明亮的光照和电致发光

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摘要

Four novel 1,3-diketonate Eu3+ complexes bearing pyrazole moieties as main ligands and a 4,7-Diphenyl-1,10-phenanthroline (bathophenanthroline) ancillary ligand were synthesized. The number of fluorine atoms in the main ligand was varied from 3 to 13. From spectroscopic studies of the synthesized complexes we conclude that increasing the degree of fluorination results in a significant rise in the quantum yield and sensitization efficiency. With further extension of the fluorinated chain length, saturation of these characteristics was observed. The maximum obtained values of the quantum yield and sensitization efficiency were 56% and 99%, respectively. In order to reveal the potential of the complexes for OLED applications, electroluminescent devices based on these compounds were fabricated and their performance was studied. It was found that the quantum efficiencies of the OLEDs and the sensitization efficiencies exhibit similar behaviour depending on the degree of fluorination of the ligands in the complexes.
机译:合成了四种新的1,3-二酮酯EU3 +复合物作为主要配体的吡唑部分和4,7-二苯基-1,10-菲林(BandophyhenthroLine)辅助配体合成。主要配体中的氟原子数量从3-13变化。从合成络合物的光谱研究中,我们得出结论,增加氟化程度导致量子产量和敏化效率的显着上升。随着氟化链长的进一步延伸,观察到这些特性的饱和度。量子产率和敏化效率的最大值分别为56%和99%。为了揭示OLED应用的配合物的潜力,制备了基于这些化合物的电致发光器件,并研究了它们的性能。发现OLED的量子效率和敏化效率表现出类似的行为,这取决于配合物中配体的氟化程度。

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