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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Synthesis and characterization of novel rhenium (I) complexes with large Stokes shift for applications in organic electroluminescent devices
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Synthesis and characterization of novel rhenium (I) complexes with large Stokes shift for applications in organic electroluminescent devices

机译:具有大斯托克斯位移的新型rh(I)配合物的合成与表征,用于有机电致发光器件

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摘要

Two novel tricarbonyl rhenium(I)(Re(I)) complexes with versatile building block (1,10-phenanthroline), i.e., Re-PPhen and Re-FPPhen (PPhen, 3,8-diphenyl-1,10-phenanthroline; FPPhen, 3,8-bis(4-fluorophenyl)-1,10-phenanthroline), were designed, synthesized and structurally characterized by FTIR, ~1H NMR and mass spectroscopy. The photophysical properties of two complexes were investigated in detail. The absorption bands centered at ca. 255-350 and 380-550nm from two complexes were attributed to the ligand-centered π→π~* electronic transition and the metal-to-iigand charge transfer dπ(Re)→π~*(ligand) (MLCT) transition, respectively. Re-PPhen and Re-FPPhen exhibited broad ~3MLCT maximum emission around 572-580 nm with the full width of half maximum of ca. 90 nm. These complexes displayed a unique feature that was a remarkably high Stokes shift up to about 240 nm. Both of two complexes showed high photoluminescence quantum efficiencies (0.11, 0.13) and short luminescent lifetimes (0.21,0.16 μs), respectively. Re-PPhen and Re-FPPhen were thermally stable with high decomposition temperature in the range of 355-365 C corresponding to 5% weight loss, indicating that two complexes were stable enough to be sublimated to fabricate organic electroluminescent devices. The electroluminescent devices based on doped Re-FPPhen complex showed very high luminance of 9293 cd m~(-2) and reasonable luminance efficiency of 9.4 cd A~(-1). All evidences showed that Re-PPhen and Re-FPPhen were potential candidates for applications in organic electroluminescent devices.
机译:两种新型的三羰基rh(I)(Re(I))配合物,具有多种结构单元(1,10-菲咯啉),即Re-PPhen和Re-FPPhen(PPhen,3,8-diphenyl-1,10-phenanthroline;设计,合成了FPPhen 3,8-双(4-氟苯基)-1,10-菲咯啉,并通过FTIR,〜1H NMR和质谱对其结构进行了表征。详细研究了两种配合物的光物理性质。吸收带的中心大约为来自两个配合物的255-350和380-550nm分别归因于以配体为中心的π→π〜*电子跃迁和金属到配体的电荷转移dπ(Re)→π〜*(配体)(MLCT)跃迁。 Re-PPhen和Re-FPPhen在572-580 nm处显示约3MLCT的最大发射,大约半峰全宽。 90纳米这些络合物显示出独特的特征,即斯托克斯位移高达240 nm时具有很高的位移。两种配合物都分别显示出高的光致发光量子效率(0.11、0.13)和较短的发光寿命(0.21,0.16μs)。 Re-PPhen和Re-FPPhen在355-365 C的高分解温度下具有热稳定性,相当于5%的重量损失,表明两种配合物足够稳定,可以升华以制造有机电致发光器件。基于掺杂的Re-FPPhen配合物的电致发光器件显示出9293 cd m〜(-2)的极高亮度和9.4 cd A〜(-1)的合理发光效率。所有证据表明,Re-PPhen和Re-FPPhen是有机电致发光器件中潜在的候选物。

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