发光二极管
材料科学
光电子学
电致发光
波长
量子点
钙钛矿(结构)
量子效率
纳米
二极管
图层(电子)
光学
纳米技术
物理
化学
复合材料
结晶学
作者
Ligang Wang,Zher Ying Ooi,Fengyan Jia,Yuqi Sun,Yun Liu,Linjie Dai,Junzhi Ye,Jincan Zhang,Hio‐Ieng Un,Yu‐Hsien Chiang,Sanyang Han,Alessandro J. Mirabelli,Miguel Anaya,Zhilong Zhang,Yang Lu,Chen Zou,Baodan Zhao,Dawei Di,Xiaodong Yang,Dengyang Guo
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-02-14
卷期号:11 (7)
标识
DOI:10.1126/sciadv.adp9595
摘要
Colloidal quantum dots (QDs) have illuminated computer monitors and television screens due to their fascinating color-tunable properties depending on the size. Here, the electroluminescence (EL) wavelength of perovskite LEDs was tuned via the atomic layer number (ALN) of nanoplates (NPs) instead of the "size" in conventional QDs. We demonstrated efficient LEDs with controllably tailored emission from n = 3, 4, 5, and ≥7 ALN perovskite NPs with specific and discrete major peaks at 607, 638, 669, and 728 nanometers. These LEDs demonstrated peak external quantum efficiency (EQE) of 26.8% and high wavelength reproducibility with less than 1 to 2 nm difference between batches. High color stability without observable EL spectral change and operating stability with the best T50 of 267 minutes at 1.0 milliampere per square centimeter was also achieved. This work demonstrates a concept of tailoring specific ALN emission with fixed wavelengths, shedding light on efficient, emission-discrete, and color-stable LEDs for next-generation display.
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