纳米晶
光电子学
胶体
二极管
材料科学
量子点
发光二极管
绿灯
量子效率
纳米技术
蓝光
电致发光
化学工程
图层(电子)
工程类
作者
Yunke Zhu,Xiuyuan Lu,Jingjing Qiu,Peng Bai,An Hu,Yige Yao,Qinyun Liu,Yang Li,Wenjin Yu,Yaolong Li,Wangxiao Jin,Xitong Zhu,Yunzhou Deng,Zhetong Liu,Peng Gao,Xiaofei Zhao,Youqin Zhu,Li Zhou,Yizheng Jin,Yunan Gao
标识
DOI:10.1002/adma.202414631
摘要
The unique anisotropic properties of colloidal quantum wells (CQWs) make them highly promising as components in nanocrystal-based devices. However, the limited performance of green and blue light-emitting diodes (LEDs) based on CQWs has impeded their practical applications. In this study, we tailored alloy CdZnSe core CQWs with precise compositions via direct cation exchange (CE) from CdSe CQWs with specific size, shape, and crystal structure and utilized hot-injection shell (HIS) growth to synthesize CdZnSe/ZnS core/shell CQWs exhibiting exceptional optoelectronic characteristics. This approach enabled us to successfully fabricate green and blue LEDs manifesting superior performance compared to previously reported solution-processed CQW-LEDs. Our devices demonstrated a remarkable peak external quantum efficiency (20.4% for green and 10.6% for blue), accompanied by a maximum brightness 347,683 cd m-2 for green and 38,063 cd m-2 for blue. The high-performance represents a significant advancement for nanocrystal-based light-emitting diodes (Nc-LEDs) incorporating anisotropic nanocrystals. This work provides a comprehensive synthesis strategy for enhancing the efficiency of Nc-LEDs utilizing anisotropic nanocrystals.
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