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Highly efficient single-stack hybrid cool white OLED utilizing blue thermally activated delayed fluorescent and yellow phosphorescent emitters

机译:利用蓝色热激活延迟荧光和黄色磷光发光体的高效单叠层混合冷白色OLED

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摘要

Highly efficient single-stack hybrid cool white organic light-emitting diodes (OLEDs) having blue-yellow-blue multiple emitting layers (EMLs) are designed and constructed by utilizing blue thermally activated delayed fluorescent (TADF) and yellow phosphorescent emitters. The out-coupling efficiencies of yellow and blue emissions are maximized by tuning the ITO and total device thickness that satisfies both of antinode positions for yellow and blue emissions in a limited multiple EML thickness. To obtain a cool white emission, the exciton formation ratio in the blue-yellow-blue multiple EML system is controlled by manipulating the recombination zone through charge conductivity variation of host medium in the blue TADF EML. The resulting device exhibits cool white emission with very high maximum external quantum efficiency of 23.1% and CIE color coordinates of (0.324, 0.337). We anticipate that the studied approach will raise the viability of single-stack hybrid cool white OLEDs for high performance display applications.
机译:通过利用蓝色热激活延迟荧光(TADF)和黄色磷光发光体来设计和构建具有蓝-黄-蓝多重发射层(EML)的高效单层混合冷白色有机发光二极管(OLED)。通过调整ITO和总器件厚度,可以在有限的多个EML厚度下满足黄色和蓝色发射的波腹位置,从而最大化黄色和蓝色发射的耦合效率。为了获得冷白色发射,通过通过蓝色TADF EML中宿主介质的电荷电导率变化操纵重组区来控制蓝黄蓝多重EML系统中的激子形成比率。所得器件显示出冷白色发射,具有非常高的23.1%的最大外部量子效率和(0.324,0.337)的CIE颜色坐标。我们预计,所研究的方法将提高用于高性能显示应用的单叠层混合冷白色OLED的可行性。

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