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Study of Sequential Dexter Energy Transfer in High Efficient Phosphorescent White Organic Light-Emitting Diodes with Single Emissive Layer

机译:具有单发光层的高效磷光白色有机发光二极管中的顺序敏捷能量转移的研究

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In this study, we report our effort to realize high performance single emissive layer three color white phosphorescent organic light emitting diodes (PHOLEDs) through sequential Dexter energy transfer of blue, green and red dopants. The PHOLEDs had a structure of; ITO(1500 ?)/NPB(700 ?)/mCP:Firpic-x%:Ir(ppy)3-0.5%:Ir(piq)3-y%(300 ?)/TPBi(300 ?)/Liq(20 ?)/Al(1200 ?). The dopant concentrations of FIrpic, Ir(ppy)3 and Ir(piq)3 were adjusted and optimized to facilitate the preferred energy transfer processes attaining both the best luminous efficiency and CIE color coordinates. The presence of a deep trapping center for charge carriers in the emissive layer was confirmed by the observed red shift in electroluminescent spectra. White PHOLEDs, with phosphorescent dopant concentrations of FIrpic-8.0%:Ir(ppy)3-0.5%:Ir(piq)3-0.5% in the mCP host of the single emissive layer, had a maximum luminescence of 37,810?cd/m2 at 11?V and a luminous efficiency of 48.10?cd/A at 5?V with CIE color coordinates of (0.35, 0.41).
机译:在这项研究中,我们报告了我们通过蓝色,绿色和红色掺杂剂的连续德克斯特能量转移实现高性能单发射层三色白色磷光有机发光二极管(PHOLED)的努力。 PHOLED具有以下结构: ITO(1500?)/ NPB(700?)/ mCP:Firpic-x%:Ir(ppy) 3 -0.5%:Ir(piq) 3 -y% (300?)/ TPBi(300?)/ Liq(20?)/ Al(1200?)。调整并优化了FIrpic,Ir(ppy) 3 和Ir(piq) 3 的掺杂剂浓度,以促进实现最佳发光效率和CIE的首选能量传输过程颜色坐标。通过观察到的电致发光光谱中的红移,证实了在发射层中存在深的电荷载流子捕获中心。白色PHOLED,在mCP主机的磷掺杂浓度为FIrpic-8.0%:Ir(ppy) 3 -0.5%:Ir(piq) 3 -0.5%单一发光层,在11?V时的最大发光率为37,810?cd / m 2 ,在5?V时的发光效率为48.10?cd / A,CIE色坐标为(0.35,0.41) 。

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