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通过在环保型ZnCuGaS:In@ZnS量子点中平衡红、绿、蓝中心实现高显色性白色量子点发光二极管

High-Color-Rendition White QLEDs by Balancing Red, Green and Blue Centres in Eco-Friendly ZnCuGaS:In@ZnS Quantum Dots.

作者信息

Jiang Jiangyuan, Zhang Shuai, Shan Qingsong, Yang Linxiang, Ren Jing, Wang Yongjin, Jeon Seokwoo, Xiang Hengyang, Zeng Haibo

机构信息

MIIT Key Laboratory of Advanced Display Materials and Devices, Institute of Optoelectronics & Nanomaterials, School of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China.

School of Precision Instruments and Optoelectronics Engineering, Tianjin University, Key Laboratory of Optoelectronics Information Technology, Ministry of Education, Tianjin, 300072, China.

出版信息

Adv Mater. 2024 May;36(21):e2304772. doi: 10.1002/adma.202304772. Epub 2024 Apr 4.

Abstract

White light-emitting diodes (WLEDs) are the key components in the next-generation lighting and display devices. The inherent toxicity of Cd/Pb-based quantum dots (QDs) limits the further application in WLEDs. Recently, more attention is focused on eco-friendly QDs and their WLEDs, especially the phosphor-free WLEDs based on mono-component, which profits from bias-insensitive color stability. However, the imbalanced carrier distribution between red-green-blue luminescent centers, even the absence of a certain luminescent center, hinders their balanced and stable photoluminescence/electroluminescence (PL/EL). Here, an In-doped strategy in Zn-Cu-Ga-S@ZnS QDs is first proposed, and the balanced carrier distribution is realized by non-equivalent substitution and In doping concentration modulation. The alleviation of the green emitter by the In-related red emitter and the compensation of blue emitter by the Zn-related electronic states contribute to the balanced red-green-blue emitting with high PL quantum yield (PLQY) of 95.3% and long lifetime (T) of over 1100 h in atmospheric conditions. Thus, the In-doped WLEDs can achieve exceedingly slight proportional variations between red-green-blue EL intensity over time (∆CIE = (0.007, 0.009)), and high champion CRI of 94.9. This study proposes a single-component QD with balanced and stable red-green-blue PL/EL spectrum, meeting the requirements of lighting and display.

摘要

白色发光二极管(WLED)是下一代照明和显示设备的关键组件。基于镉/铅的量子点(QD)的固有毒性限制了其在WLED中的进一步应用。最近,更多的关注集中在环保型量子点及其WLED上,尤其是基于单一组分的无磷WLED,其得益于对偏置不敏感的颜色稳定性。然而,红-绿-蓝发光中心之间载流子分布不均衡,甚至缺少某个发光中心,阻碍了它们平衡且稳定的光致发光/电致发光(PL/EL)。在此,首次提出在Zn-Cu-Ga-S@ZnS量子点中采用铟掺杂策略,并通过不等价取代和铟掺杂浓度调制实现了载流子的平衡分布。与铟相关的红色发射体对绿色发射体的减弱以及与锌相关的电子态对蓝色发射体的补偿,有助于实现红-绿-蓝平衡发射,在大气条件下具有95.3%的高光致发光量子产率(PLQY)和超过1100小时的长寿命(T)。因此,铟掺杂的WLED在红-绿-蓝EL强度随时间的变化之间可以实现极其微小的比例变化(∆CIE =(0.007,0.009)),以及高达94.9的高显色指数(CRI)冠军值。本研究提出了一种具有平衡且稳定的红-绿-蓝PL/EL光谱的单一组分量子点,满足了照明和显示的要求。

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