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Highly Efficient White Organic Light-Emitting Diodes with Ultrathin Emissive Layers and a Spacer-Free Structure

机译:具有超薄发光层和无间隔结构的高效白色有机发光二极管

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摘要

Ultrathin emissive layers (UEMLs) of phosphorescent materials with a layer thickness of less than 0.3 nm were introduced for high-efficiency organic light-emitting diodes (OLEDs). All the UEMLs for white OLEDs can be prepared without the use of interlayers or spacers. Compared with devices fabricated with interlayers inserted in-between the UEMLs, our spacer-free structure not only significantly improves device efficiency, but also simplifies the fabrication process, thus it has a great potential in lowering the cost of OLED panels. In addition, its spacer-free structure decreases the number of interfaces which often introduce unnecessary energy barriers in these devices. In the present work, UEMLs of red, green and blue-emitting phosphorescent materials and yellow and blue phosphorescent emitters are utilized for the demonstration of spacer-free white OLEDs. Upon optimization of the device structure, we demonstrated spacer-free and simple-structured white-emitting OLEDs with a good device performance. The current and power efficiencies of our white-emitting devices are as high as 56.0 cd/A and 55.5 lm/W, respectively. These efficiencies are the highest ever reported for OLEDs fabricated with the UEML approach.
机译:磷光材料的超薄发射层(UEML)的层厚度小于0.3μnm,已被引入到高效有机发光二极管(OLED)中。无需使用中间层或间隔层即可制备所有用于白色OLED的UEML。与在UEML之间插入中间层所制造的器件相比,我们的无间隔结构不仅显着提高了器件效率,而且简化了制造过程,因此在降低OLED面板成本方面具有巨大潜力。此外,其无间隔结构减少了接口的数量,这些接口经常在这些设备中引入不必要的能量屏障。在当前的工作中,红色,绿色和蓝色发光磷光材料的UEML和黄色和蓝色磷光发光体的UEML被用于演示无间隔的白色OLED。通过优化器件结构,我们展示了具有良好器件性能的无间隔物和结构简单的发白光OLED。我们的白光发射器件的电流效率和功率效率分别高达56.0?cd / A和55.5?lm / W。对于使用UEML方法制造的OLED,这些效率是有史以来最高的。

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