Issue 3, 2022

Design of efficient color-tunable long persistent luminescence phosphor BaGa2O4:Pr3+ and its performance enhancement via a trap-induced strategy

Abstract

Color-tunable long persistent luminescence (LPL) phosphors are more strongly desired for intelligent anti-counterfeiting and information storage compared with single color types. Herein, BaGa2O4 (BGO): x% Pr3+, y% Zn2+ (0.005 ≤ x ≤ 1.0, 0.5 ≤ y ≤ 3.0) are synthesized using a simple solid-state method and its crystal structure, optical performances, and trap properties are discussed in detail. The structure refinement implies Pr3+ and Zn2+ occupy Ba2+ and Ga3+ sites respectively, which lead to cell expansion along the c-axis and could be conducive to generating the defects such as oxygen vacancy Image ID:d1tc04763a-t1.gif, Image ID:d1tc04763a-t2.gif and Image ID:d1tc04763a-t3.gif. Spectrum analyzation shows that due to energy transfer from host luminescence to Pr3+ and its cross-relaxation, the PL shows color-tunable (blue to white even to red) emission. The addition of Zn2+ can enhance the host-defect luminescence range of 400–550 nm closely related to Image ID:d1tc04763a-t4.gif and the change in band gaps. Thus, the optimal LPL sample, BGO: 0.6% Pr3+, 2.0% Zn2+ (initial brightness: ∼0.256 cd m−2, LPL decay time: ∼3500 s), is obtained. Moreover, based on DFT calculation, Image ID:d1tc04763a-t5.gif can be easily generated with the formation energy of 5.75 eV. In addition, the effect of Image ID:d1tc04763a-t6.gif is further studied by thermal-luminescence curve (TL), X-ray photoelectron spectroscopy (XPS) and electron spin resonance spectroscopy (ESR). According to the results, a possible LPL mechanism is proposed, and the dynamic multi-color pieces are designed for anti-counterfeiting.

Graphical abstract: Design of efficient color-tunable long persistent luminescence phosphor BaGa2O4:Pr3+ and its performance enhancement via a trap-induced strategy

Supplementary files

Article information

Article type
Paper
Submitted
06 Oct 2021
Accepted
07 Dec 2021
First published
22 Dec 2021

J. Mater. Chem. C, 2022,10, 1105-1117

Design of efficient color-tunable long persistent luminescence phosphor BaGa2O4:Pr3+ and its performance enhancement via a trap-induced strategy

X. Ma, P. Feng, Y. Wang, S. Ding, S. Tian and Y. Wang, J. Mater. Chem. C, 2022, 10, 1105 DOI: 10.1039/D1TC04763A

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