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High Efficiency Phosphorescent OLEDs based on the Heterostructured Light Emission and Charge Injection Layers

机译:基于异质结构发光和电荷注入层的高效磷光OLED

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The light emitting efficiency and the stability of the phosphorescent devices, whose emission characteristics are strongly dominated not only by the energy transfer but also by the charge carrier trapping influenced by the heterostructured emissive layers and charge injection layer, are studied in terms of the charge injection behavior, carrier transporting mobility, and balancing of devices. The enhancement of the light emitting properties (higher efficiency and lower driving voltage) by use of heterostructures at emitting layer, either multilayers or mixing of hole- and electron-transporting materials (such as 4,4",4"-tris(N-carbazolyl)-triphenylamine); TCTA and bis(10-hydroxybenzo[h]quinolinate) beryllium; Bebq_2) was characterized. By a design of emitting layer structure for recombination, 30~50lm/W efficiency of devices with Ir(ppy)_3 and conventional transporting layer was possible.
机译:在电荷注射的方面研究了光度发光特性,其发光特性的发光效率和磷光荧光装置的稳定性强烈地占主导地位,而且由异性发光层和电荷注入层的电荷载体捕获。行为,载波运输移动性和设备的平衡。通过在发光层处的异质结构,多层或孔和电子传输材料的混合(例如4,4“,4” - 三“(n-)来增强发光性质(较高效率和较低的驱动电压)(例如,咔唑基) - 噻吩基胺); TCTA和BIS(10-羟基苯并[H]喹啉)铍; bebq_2)的特征。通过设计用于重组的发光层结构,可以使用IR(PPY)_3和常规传输层的30〜50Lm / W效率。

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