光电子学
色域
量子点
激光线宽
电致发光
材料科学
发光二极管
分布式布拉格反射镜
二极管
光学微腔
量子效率
光子学
光学
激光器
纳米技术
物理
波长
图层(电子)
作者
Qian Zhang,Gege Li,Penghao Zhou,Zhuoyue Chen,Jungui Zhou,Fang Niu,Lianbao Kong,Qingli Lin,Stephan V. Roth,Huaibin Shen
出处
期刊:Small
[Wiley]
日期:2024-10-21
标识
DOI:10.1002/smll.202405704
摘要
Abstract A wide‐color‐gamut display enableby a narrow emission linewidth facilitates a visually immersive experience akin to the real world. Quantum dot light‐emitting diodes (QLEDs) with excellent color purity and high efficiency hold great promise as future candidates for high‐definition displays. However, most devices typically exhibit emission linewidths exceeding 20 nm, and lack a universal strategy for further enhancing the color purity. In this study, a planar microcavity structure for realizing ultra‐narrow emissions is developed by incorporating a distributed Bragg reflector into normal electroluminescent devices. By leveraging the strong optical resonance effect derived from this microcavity structure, red QLEDs are successfully fabricated with an extraordinary full width at half maximum of 11 nm in the normal direction, beyond the BT.2020 color coordinates. The fabricated red‐microcavity QLEDs exhibit a considerable enhancement in the external quantum efficiency, which increases from 28.2% to 35.6%, together with an extended operating lifetime. The strategy adopted herein will serve as an effective reference for achieving ultra‐narrow emission and high‐efficiency QLEDs.
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