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Comparison of dye doping and ultrathin emissive layer in white organic light-emitting devices with dual emissive layers

机译:具有双发光层的白色有机发光器件中染料掺杂和超薄发光层的比较

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White organic light-emitting devices (WOLEDs) with combined doping emissive layer (EML) and ultrathin EML have been fabricated to investigate the effect of each EML on the electroluminescent (EL) performance of the WOLEDs. Through tailoring doping concentration of bis[(4,6-difluorophenyl)-pyridinato-N,C2'](picolinate) iridium(Ⅲ) (FIrpic) and thickness of ultrathin bis[2-(4-tertbutylphenyl)benzothiazolato-N,C2'] iridium (acetylacetonate) [(tbt)_2Ir(acac)] EML, it is found that the change in the doping ratio of FIrpic significantly influenced the EL efficiencies and spectra, while the alteration of ultrathin EML thickness had much milder effect on the EL performance. The results indicated that ultrathin EML is in favor of reproducibility in mass production compared with doping method.
机译:已制造出具有掺杂掺杂发射层(EML)和超薄EML的白色有机发光器件(WOLED),以研究每种EML对WOLED的电致发光(EL)性能的影响。通过调整双[(4,6-二氟苯基)-吡啶基-N,C2'](吡啶甲酸)铱(Ⅲ)(FIrpic)的掺杂浓度和超薄双[2-(4-叔丁基苯基)苯并噻唑-N,C2的厚度'](乙酰丙酮铱)[(tbt)_2Ir(acac)] EML,发现FIrpic掺杂比的变化显着影响EL效率和光谱,而超薄EML厚度的变化对Erpic的影响要小得多。 EL性能。结果表明,与掺杂方法相比,超薄EML有利于大规模生产的可再现性。

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