Qi Hui, Wang Shujie, Li Chenguang, Zhao Yaolong, Xu Bo, Jiang Xiaohong, Fang Yan, Wang Aqiang, Shen Huaibin, Du Zuliang
Key Laboratory for Special Functional Materials of Ministry of Education, National & Local Joint Engineering Research Centre for High-efficiency Display and Lighting Technology, School of Materials and Engineering, Collaborative Innovation Centre of Nano Functional Materials and Applications, Henan University, Kaifeng 475004, China.
Nanoscale. 2021 May 13;13(18):8498-8505. doi: 10.1039/d1nr00082a.
Highly efficient blue quantum-dot light-emitting diodes (QLEDs) are still challenging to use in displays and solid-state lighting. Enhancing light outcoupling is one of the most effective methods to improve the performance of blue QLEDs. Here, a strategy for a spectrally independent boost in light outcoupling of blue QLEDs is demonstrated by quasi-periodic wrinkles, which are successfully used as a diffraction grating for extracting trapped light at the substrate/air interface. The quasi-periodic wrinkles can be adjusted from nano-scale to micron-scale under the condition of a constant aspect ratio, and the optimized wrinkle device shows a maximum luminance of 11 769 cd m-2 and a peak EQE of 15.41%. The enhancement of EQE is 49.5% higher compared to that of the reference device. Furthermore, simulation and calculation also indicate that external micron-scattering wrinkle patterns are an attractive option for boosting the performances of blue QLEDs.
高效蓝色量子点发光二极管(QLED)在显示器和固态照明中的应用仍然具有挑战性。提高光出射耦合是提高蓝色QLED性能的最有效方法之一。在此,通过准周期皱纹展示了一种在光谱上独立增强蓝色QLED光出射耦合的策略,这些皱纹成功地用作衍射光栅,用于提取在衬底/空气界面处被困的光。在恒定纵横比的条件下,准周期皱纹可以从纳米尺度调整到微米尺度,优化后的皱纹器件显示出最大亮度为11769 cd m-2,峰值外量子效率(EQE)为15.41%。与参考器件相比,EQE的提高高出49.5%。此外,模拟和计算还表明,外部微米级散射皱纹图案是提高蓝色QLED性能的一个有吸引力的选择。