Li Saifei, Xu Xiongping, Lin Qingli, Sun Jiahui, Zhang Han, Shen Huaibin, Li Lin Song, Wang Lei
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, Henan University, Kaifeng, 475004, China.
Small. 2024 Jun;20(24):e2306859. doi: 10.1002/smll.202306859. Epub 2023 Dec 28.
Solution-processed and efficient yellow quantum dot light-emitting diodes (QLEDs) are considered key optoelectronic devices for lighting, display, and signal indication. However, limited synthesis routes for yellow quantum dots (QDs), combined with inferior stress-relaxation of the core-shell interface, pose challenges to their commercialization. Herein, a nanostructure tailoring strategy for high-quality yellow CdZnSe/ZnSe/ZnS core/shell QDs using a "stepwise high-temperature nucleation-shell growth" method is introduced. The synthesized CdZnSe-based QDs effectively smoothed the release stress of the core-shell interface and revealed a near-unit photoluminescence quantum yield, with nonblinking behavior and matched energy level, which accelerated radiative recombination and charge injection balance for device operation. Consequently, the yellow CdZnSe-based QLEDs exhibited a peak external quantum efficiency of 23.7%, a maximum luminance of 686 050 cd m, and a current efficiency of 103.2 cd A, along with an operating half-lifetime of 428 523 h at 100 cd m. To the best of the knowledge, the luminance and operational stability of the device are found to be the highest values reported for yellow LEDs. Moreover, devices with electroluminescence (EL) peaks at 570-605 nm exhibited excellent EQEs, surpassing 20%. The work is expected to significantly push the development of RGBY-based display panels and white LEDs.
溶液法制备的高效黄色量子点发光二极管(QLED)被认为是用于照明、显示和信号指示的关键光电器件。然而,黄色量子点(QD)的合成路线有限,再加上核壳界面的应力松弛较差,这对其商业化构成了挑战。在此,介绍了一种使用“逐步高温成核-壳层生长”方法对高质量黄色CdZnSe/ZnSe/ZnS核/壳量子点进行纳米结构剪裁的策略。合成的基于CdZnSe的量子点有效地缓解了核壳界面的应力释放,并显示出接近单位的光致发光量子产率,具有不闪烁行为和匹配的能级,这加速了器件运行中的辐射复合和电荷注入平衡。因此,基于黄色CdZnSe的QLED表现出23.7%的峰值外量子效率、686050 cd m的最大亮度和103.2 cd A的电流效率,以及在100 cd m下428523小时的工作半寿命。据所知,该器件的亮度和运行稳定性是黄色LED报道的最高值。此外,电致发光(EL)峰值在570-605 nm的器件表现出优异的外量子效率,超过20%。这项工作有望显著推动基于RGBY的显示面板和白色LED的发展。