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Solution-Processed Phosphorescent Organic Light-Emitting Diodes with Ultralow Driving Voltage and Very High Power Efficiency

机译:具有超低驱动电压和极高功率效率的溶液处理磷光有机发光二极管

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摘要

To realize power efficient solution-processed phosphorescent organic light-emitting diodes (s-PhOLEDs), the corresponding high driving voltage issue should be well solved. To solve it, efforts have been devoted to the exploitation of novel host or interfacial materials. However, the issues of charge trapping of phosphor and/or charge injection barrier are still serious, largely restraining the power efficiency (PE) levels. Herein, with the utilization of an exciplex-forming couple 4, 4′, 4″ -tris[3-methylphenyl(phenyl)amino]triphenylamine (m-MTDATA) and 1,3,5-tri(m-pyrid-3-yl-phenyl)benzene (TmPyPB), the efficient charge injection and transporting, barrier-free hole-electron recombination for the formation of the interfacial exciplex, and elimination of charge traps of phosphors in the emissive layer are realized simultaneously, resulting in a turn-on voltage of 2.36 V, a record high PE of 97.2 lm W−1, as well as extremely low driving voltage of 2.60 V at 100 cd m−2, 3.03 V at 1000 cd m−2 and 4.08 V at 10000 cd m−2. This report is the first time that the PE performance of s-PhOLED approaches 100 lm W−1 high level, even superior to the corresponding state-of-the-art performance of the same color vacuum-deposited PhOLED (v-PhOLED) counterpart. We anticipate this report opens a new avenue for achieving power efficient monochromatic and white s-PhOLEDs with simple structures.
机译:为了实现功率高效的溶液处理的磷光有机发光二极管(s-PhOLED),应很好地解决相应的高驱动电压问题。为了解决该问题,已经致力于开发新型主体或界面材料。但是,磷光体和/或电荷注入势垒的电荷捕获问题仍然很严重,大大限制了功率效率(PE)的水平。本文中,利用形成激基复合物的对4、4',4”-三[3-甲基苯基(苯基)氨基]三苯胺(m-MTDATA)和1,3,5-三(m-吡啶-3-) yl-苯基)苯(TmPyPB),有效的电荷注入和传输,形成界面激基复合物的无障碍空穴电子重组以及在发光层中消除磷光体的电荷陷阱,同时实现了转向导通电压为2.36 V,PE达到创纪录的97.2slm W -1 ,以及100 drivingcd m −2 时极低的2.60 V驱动电压,为3.03在1000 cd m -2 时的V和在10000 atcd m -2 时的4.08V。这份报告是s-PhOLED的PE性能首次达到100µlm W -1 的高水平,甚至优于真空沉积相同颜色的相应最新技术PhOLED(v-PhOLED)对应物。我们预计该报告将为实现具有简单结构的高功率单色和白色s-PhOLED提供新的途径。

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