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用于白光发光二极管的铕掺杂 CsPbBr 量子点玻璃的纳米晶结构控制及可调谐发光机制

Nanocrystalline structure control and tunable luminescence mechanism of Eu-doped CsPbBr quantum dot glass for WLEDs.

作者信息

Li Panpan, Duan Yongmin, Lu Yang, Xiao An, Zeng Ziyang, Xu Shiqing, Zhang Junjie

机构信息

Institute of Optoelectronic Materials and Devices China Jiliang University, Hangzhou, 310018, China.

出版信息

Nanoscale. 2020 Mar 28;12(12):6630-6636. doi: 10.1039/d0nr01207f. Epub 2020 Mar 18.

Abstract

CsPbX(Cl, Br, I) perovskite quantum dot glass has been widely reported, and the discovery of next-generation perovskite luminescent materials has been challenged by doping rare earth activators with energy-level transitions. In this work, we report a novel Eu-doped quantum dot glass material with tunable luminescence properties. The structure characteristics and tunable luminescence mechanism were investigated by combining X-ray diffraction, X-ray photoelectric spectroscopy, excitation and emission spectra. It was found that Eu ions replaced the lattice of Pb in CsPbBr quantum dots and formed CsEuBr quantum dots, which resulted in a blue emission. Meanwhile, a green emission from CsPbBr quantum dots and a red emission originally from Eu in the glass matrix can also be observed by controlling the heat treatment temperature. A light-emitting diode is designed based on the prepared Eu-doped quantum dot glass without doping any phosphors, and a warm light with CCT at 4075 K is obtained. The present work provides a new luminescence tunable design principle for europium-doped quantum dot glass materials and could inspire the future exploration of rare earth ion-doped quantum dot glass materials.

摘要

CsPbX(Cl, Br, I)钙钛矿量子点玻璃已被广泛报道,而通过掺杂具有能级跃迁的稀土激活剂来发现下一代钙钛矿发光材料面临挑战。在这项工作中,我们报道了一种具有可调发光特性的新型铕掺杂量子点玻璃材料。通过结合X射线衍射、X射线光电子能谱、激发光谱和发射光谱研究了其结构特征和可调发光机制。发现铕离子取代了CsPbBr量子点中Pb的晶格,形成了CsEuBr量子点,从而产生蓝色发射。同时,通过控制热处理温度,还可以观察到来自CsPbBr量子点的绿色发射和玻璃基质中原本来自铕的红色发射。基于制备的铕掺杂量子点玻璃设计了一种发光二极管,在不掺杂任何磷光体的情况下获得了色温为4075 K的暖光。本工作为铕掺杂量子点玻璃材料提供了一种新的发光可调设计原理,并可能激发未来对稀土离子掺杂量子点玻璃材料的探索。

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