Issue 2, 2022

Improvement of the thermal stability of bluish-cyan emitting phosphor Y2MgAl4SiO12:Eu2+ using substitution cations (Zn, Ca, Sr) for white LEDs

Abstract

A series of bluish-cyan color adjustable phosphors Y2MgAl4SiO12:xEu2+(YMAS) and Y2(Mg1−y,My)Al4SiO12:Eu2+ (M = Zn, Ca, Sr) were synthesized by the solid-state method. The thermal stability can be improved by modifying the cation, especially the thermal stability of Y2MgAl4SiO12:Eu2+ at 150 °C gradually improved to 92.34% of the original luminescence intensity by introducing Sr2+. The white light emitting diode (LED) was fabricated by combining near ultraviolet (NUV) LED chip (370 nm) with a mixture of Y2Mg0.8Sr0.2Al4SiO12:0.01Eu2+ along with green (Ba,Sr)2SiO4:Eu and red CaSiAlN3:Eu in different proportions. A bright warm white LED gives a high color rendering index Ra = 96.4, a low correlated color temperature CCT = 4434 K, and CIE chromaticity coordinates at (0.35, 0.34). The results demonstrate that Y2Mg0.8Sr0.2Al4SiO12:Eu2+ phosphor has potential application in the field of white LEDs.

Graphical abstract: Improvement of the thermal stability of bluish-cyan emitting phosphor Y2MgAl4SiO12:Eu2+ using substitution cations (Zn, Ca, Sr) for white LEDs

Supplementary files

Article information

Article type
Paper
Submitted
20 Oct 2021
Accepted
23 Nov 2021
First published
23 Nov 2021

CrystEngComm, 2022,24, 358-367

Improvement of the thermal stability of bluish-cyan emitting phosphor Y2MgAl4SiO12:Eu2+ using substitution cations (Zn, Ca, Sr) for white LEDs

H. Yang, P. Li, Z. Ye, X. Huo, Y. Wang, Q. Wu, D. Wang, J. Zhao, F. Wang and Z. Wang, CrystEngComm, 2022, 24, 358 DOI: 10.1039/D1CE01414E

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