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Charge Generation Layers for Solution Processed Tandem Organic Light Emitting Diodes with Regular Device Architecture

机译:具有常规器件架构的溶液处理串联有机发光二极管的电荷产生层

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Tandem organic light emitting diodes (OLEDs) utilizing fluorescent polymers in both sub-OLEDs and a regular, device architecture were fabricated from solution, and their structure and performance characterized. The charge carrier generation layer comprised a zinc oxide layer, modified by a polyethylenimine interface dipole, for electron injection and either, MoO3, WO3, or VOx, for hole injection into the adjacent sub-OLEDs. ToF-SIMS investigations and STEM-Eta mapping verified the distinct functional layers throughout the layer stack. At a given device current density, the current efficiencies of both sub-OLEDs add up to a maximum of 25 cd/A, indicating a properly working tandem OLED.
机译:从解决方案中制造了在子OLED和常规设备架构中均采用荧光聚合物的串联有机发光二极管(OLED),并对其结构和性能进行了表征。电荷载流子产生层包括由聚乙烯亚胺界面偶极改性的氧化锌层,用于电子注入,以及MoO3,WO3或VOx,用于将空穴注入相邻的子OLED。 ToF-SIMS调查和STEM-Eta映射验证了整个层堆栈中不同的功能层。在给定的器件电流密度下,两个子OLED的电流效率总计最高为25 cd / A,表明串联OLED工作正常。

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