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Efficient green electroluminescence from 1,3-diphenyl-1H-pyrazolo[3,4-b]quinoxaline dyes in dye-doped polymer based electroluminescent devices

机译:高效的绿色电致发光,来自1,3-二苯基-1H-吡唑[3,4-B]喹喔啉染料在染料掺杂的基于聚合物的电致发光器件中

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摘要

We demonstrate several polymer based electroluminescent devices with active poly(N-vinylcarbazole) (PVK) layer doped with diphenylpyrazoloquinoxaline (PQX) dyes, RPQX, with lateral substituent R = Me, MeO, F or Cl. The electronic properties of these fluorescence emitters and relevant electroluminescence devices are characterized by optical spectroscopy techniques. The first absorption bands of the RPQX dyes considerably overlap with the fluorescence emission band of the host PVK matrix resulting in efficient radiative energy transfer between them. Using the measured electroluminescent spectra the emission color is characterized in CIE 1931 XYZ color space. The electroluminescence devices with a dye-doped active layer PVK:RPQX (R = Me, MeO, F or Cl) emit light with different shades of green color. The electroluminescent performance is characterized in terms of current efficiency determined from the luminance-current-voltage measurements. Depending on the fluorescent dopant it ranges from about 0.5 to above 2.2 cd/A. Such efficiency has been achieved on a simple dye doped device configuration without significant optimization. Accordingly, RPQX dyes may be considered as prospective fluorescence emitters for electroluminescent applications. The measured spectral characteristics of RPQX fluorescent emitters and relevant electroluminescent devices are compared with quantum-chemical DFT/TDDFT calculations based on re-parameterized long-range corrected functional and corrected linear response solvation. Relevant analysis, due to its good performance and predicability, appears to be helpful not only for understanding of the, origin of electronic transitions, but may serve as useful tool for chemical engineering dealing with design and synthesis of novel organic dyes for optoelectronic applications.
机译:我们展示了几种基于聚合物的电致发光器件,其中活性聚(N-乙烯基咔唑)(PVK)层掺杂有二苯基吡唑喹恶啉(PQX)染料RPQX,带有侧取代基R=Me、MeO、F或Cl。这些荧光发射器和相关电致发光器件的电子性质通过光学光谱技术进行了表征。RPQX染料的第一吸收带与主体PVK基质的荧光发射带显著重叠,导致它们之间的有效辐射能量转移。使用测量的电致发光光谱,在CIE 1931 XYZ颜色空间中表征发射颜色。具有染料掺杂活性层PVK:RPQX(R=Me、MeO、F或Cl)的电致发光器件发射具有不同深浅绿色的光。电致发光性能是根据亮度-电流-电压测量确定的电流效率来表征的。根据荧光掺杂剂的不同,其范围从约0.5 cd/A到2.2 cd/A以上。这种效率在简单的染料掺杂设备配置上实现,无需进行重大优化。因此,RPQX染料可被视为电致发光应用的潜在荧光发射器。测量了RPQX荧光发射器和相关电致发光器件的光谱特性,并与基于重参数化长程修正泛函和修正线性响应溶剂化的量子化学DFT/TDDFT计算进行了比较。由于其良好的性能和可预测性,相关分析似乎不仅有助于理解电子跃迁的起源,而且可以作为化工设计和合成用于光电应用的新型有机染料的有用工具。

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