光电子学
有机发光二极管
材料科学
能量转移
荧光
猝灭(荧光)
量子效率
二极管
商业化
量子点
费斯特共振能量转移
蓝移
能量(信号处理)
纳米技术
发光二极管
高效能源利用
蓝光
低能
高能
作者
Fang Wang,Weimin Ning,Fengping Hu,Ming-Chou Wu
摘要
In current commercializing OLED panels, blue devices still mainly utilize traditional fluorescent emission mechanisms due to the shorter lifetime and low color purity of blue PH‐OLEDs and TADF‐OLEDs. Despite the internal quantum efficiency (IQE) can be achieved 62.5% by using commercial blue host materials with Triplet‐Triplet Fusion (TTF) characteristics, the external quantum efficiency (EQE ) of blue fluorescent devices doesn't look respectable on account of incomplete utilization of triplet excitons, such as aggregation‐caused quenching (ACQ) and triplet‐polaron quenching (TPQ). In recent years, the dual‐EML blue devices were developed to improve efficiencies of fluorescence OLEDs. However, the energy transfer and utilization mechanisms are still unclear understanding. To accelerating the commercialization of Dual‐EML blue devices, our team present a novel device structure system to analysis the different energy utilization mechanisms between EML1 and EML2. The blue device exhibits high efficiency~300 BI and great improvement of lifetime ~80%, and providing valuable insights in both selecting well‐matched BH materials and optimizing device structure.
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