A Study on the Anti-thermal Dy3+/Eu3+ Co-doped BaLa4Si3O13 Red Phosphors for White-Light-Emitting Diodes and Optical Thermometry Applications

被引:32
作者
Liao, Fan [1 ]
Shen, Bingqing [1 ]
Wu, Weiwei [1 ]
Zhang, Yuanpeng [2 ]
Hu, Jianxu [1 ]
机构
[1] Ningbo Univ, Key Lab Photoelect Mat, Ningbo 315211, Zhejiang, Peoples R China
[2] Oak Ridge Natl Lab, Oak Ridge, TN 37830 USA
关键词
D O I
10.1021/acs.iecr.0c05996
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
A series of Dr(3+)/Eu3+ co-doped BaLa4Si3O13 phosphors were synthesized by a solid-state reaction method. The Dy3+/Eu3+ co-doped BaLa4Si3O13 phosphors exhibit superior thermal behavior to the corresponding Dy3+ singly doped and Eu3+ singly doped BaLa4Si3O13 phosphors. A remarkable enhancement of thermal stability is observed as the Eu3+ concentration increases. The emission intensity is enhanced by a factor of similar to 1.1 at 423 K compared to that at 298 K for the 11 mol % Eu3+ doped sample. The improved thermal stability is ascribed to the enhanced energy transfer from Dy3+ to Eu3+ at high temperature, which enhances the Eu3+ emission and effectively compensates the thermal quenching-induced emission reduction. The synthesized phosphors can further be employed as optical thermometry materials, with the highest relative sensitivity (S-r) of 1.462% K-1 at 497 K. The results demonstrate that employing energy transfer is an effective strategy to design anti-thermal phosphors and the synthesized Dy3+/Eu3+ co-doped BaLa4Si3O13 phosphors show great potential as red phosphors for white-light-emitting diodes and optical temperature sensing applications.
引用
收藏
页码:2931 / 2943
页数:13
相关论文
共 52 条
[1]   Hydrophobic Organic Skin as a Protective Shield for Moisture Sensitive Phosphor-Based Optoelectronic Devices [J].
Arunkumar, Paulraj ;
Kim, Yoon Hwa ;
Kim, Ha Jun ;
Unithrattil, Sanjith ;
Im, Won Bin .
ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (08) :7232-7240
[2]   LUMINESCENCE OF INORGANIC SOLIDS - FROM ISOLATED CENTERS TO CONCENTRATED SYSTEMS [J].
BLASSE, G .
PROGRESS IN SOLID STATE CHEMISTRY, 1988, 18 (02) :79-171
[3]   Chromaticity-tunable phosphor-in-glass for long-lifetime high-power warm w-LEDs [J].
Chen, Hui ;
Lin, Hang ;
Xu, Ju ;
Wang, Bo ;
Lin, Zebin ;
Zhou, Jiangcong ;
Wang, Yuansheng .
JOURNAL OF MATERIALS CHEMISTRY C, 2015, 3 (31) :8080-8089
[4]   Understanding the Local and Electronic Structures toward Enhanced Thermal Stable Luminescence of CaAlSiN3:Eu2+ [J].
Chen, Lei ;
Fei, Mi ;
Zhang, Zhao ;
Jiang, Yang ;
Chen, Shifu ;
Dong, Yongqi ;
Sun, Zhihu ;
Zhao, Zhi ;
Fu, Yibing ;
He, Jinhua ;
Li, Can ;
Jiang, Zheng .
CHEMISTRY OF MATERIALS, 2016, 28 (15) :5505-5515
[5]   Localized Charge Accumulation Driven by Li+ Incorporation for Efficient LED Phosphors with Tunable Photoluminescence [J].
Chen, Yibo ;
Chen, Jinquan ;
Liang, Jinhui ;
He, Jin ;
Liu, Zhao-Qing ;
Yin, Yadong .
CHEMISTRY OF MATERIALS, 2020, 32 (22) :9551-9559
[6]   First principles methods using CASTEP [J].
Clark, SJ ;
Segall, MD ;
Pickard, CJ ;
Hasnip, PJ ;
Probert, MJ ;
Refson, K ;
Payne, MC .
ZEITSCHRIFT FUR KRISTALLOGRAPHIE, 2005, 220 (5-6) :567-570
[7]   Ultrastable red-emitting phosphor-in-glass for superior high-power artificial plant growth LEDs [J].
Deng, Jiankun ;
Zhang, Haoran ;
Zhang, Xuejie ;
Zheng, Yinjian ;
Yuan, Junqiang ;
Liu, Hongzhong ;
Liu, Yingliang ;
Lei, Bingfu ;
Qiu, Jianbei .
JOURNAL OF MATERIALS CHEMISTRY C, 2018, 6 (07) :1738-1745
[8]   Eu3+-Activated NaGdF4 Nanorods for Near-Ultraviolet Light-Triggered Indoor Illumination [J].
Du, Peng ;
Ran, Weiguang ;
Hou, Yafei ;
Luo, Laihui ;
Li, Weiping .
ACS APPLIED NANO MATERIALS, 2019, 2 (07) :4275-+
[9]   Chemical Control of SrLi(Al1-xGax)3N4:Eu2+ Red Phosphors at Extreme Conditions for Application in Light-Emitting Diodes [J].
Fang, Mu-Huai ;
Meng, Shu-Yi ;
Majewska, Natalia ;
Lesniewski, Tadeusz ;
Mahlik, Sebastian ;
Grinberg, Marek ;
Sheu, Hwo-Shuenn ;
Liu, Ru-Shi .
CHEMISTRY OF MATERIALS, 2019, 31 (12) :4614-4618
[10]   Local Structure Distortion Induced Broad Band Emission in the All-Inorganic BaScO2F:Eu2+ Perovskite [J].
Hariyani, Shruti ;
Brgoch, Jakoah .
CHEMISTRY OF MATERIALS, 2020, 32 (15) :6640-6649