Preparation and luminescence properties of orange-red Ba3Y4O9:Sm3+ phosphors
来源期刊:Journal of Rare Earths2018年第7期
论文作者:Jiayu Li Ran Pang Zhan Yu Liyan Liu Haiyan Wu Huimin Li Lihong Jiang Su Zhang Jing Feng Chengyu Li
文章页码:680 - 684
摘 要:A novel orange-red emitting Ba3 Y4 O9:Sm3+ phosphors were prepared by a high temperature solidstate reaction in air. X-ray diffraction(XRD), photoluminescence spectra, fluorescence decay and temperature-dependent emission spectra were utilized to characterize the structure and luminescence properties. The results show that the excitation spectrum includes a series of linear peaks at350, 367, 382, 410, 424, 445, 470 and 495 nm, respectively. Under 410 nm excitation, the emission peaks were located at 574 nm(4 G5/2-6 H5/2), 608 nm(4 G5/2-6 H7/2),659 nm(4 G5/2-6 H9/2) and722 nm(4 G5/2-6 H11/2), respectively. The concentration quenching occurs when x equals 0.08 for Ba3 Y4-xO9:xSm3+ phosphor and its mechanism is ascribed to the dipole-dipole interaction. The chromaticity coordinates of Ba3 Y3.92O9:0.08 Sm3+ phosphor are in the orange-red region. The temperature-dependent study shows that this phosphor has excellent luminescence thermal-stability.And the luminescence intensity of Ba3 Y3.92O9:0.08 Sm3+ phosphor at 473 K only declines by about25.75% of its initial intensity. The experimental data indicate that Ba3 Y4 O9:Sm3+ phosphor may be promising as an orange-red emitting phosphor for white light emitting diodes.
Jiayu Li1,2,Ran Pang1,Zhan Yu2,Liyan Liu2,Haiyan Wu1,3,Huimin Li1,3,Lihong Jiang1,Su Zhang1,Jing Feng1,Chengyu Li1
1. State Key Laboratory of Rare Earth Resource Utilization,Changchun Institute of Applied Chemistry,Chinese Academy of Sciences2. School of Chemistry and Chemical Engineering,Shenyang Normal University3. University of Chinese Academy of Sciences
摘 要:A novel orange-red emitting Ba3 Y4 O9:Sm3+ phosphors were prepared by a high temperature solidstate reaction in air. X-ray diffraction(XRD), photoluminescence spectra, fluorescence decay and temperature-dependent emission spectra were utilized to characterize the structure and luminescence properties. The results show that the excitation spectrum includes a series of linear peaks at350, 367, 382, 410, 424, 445, 470 and 495 nm, respectively. Under 410 nm excitation, the emission peaks were located at 574 nm(4 G5/2-6 H5/2), 608 nm(4 G5/2-6 H7/2),659 nm(4 G5/2-6 H9/2) and722 nm(4 G5/2-6 H11/2), respectively. The concentration quenching occurs when x equals 0.08 for Ba3 Y4-xO9:xSm3+ phosphor and its mechanism is ascribed to the dipole-dipole interaction. The chromaticity coordinates of Ba3 Y3.92O9:0.08 Sm3+ phosphor are in the orange-red region. The temperature-dependent study shows that this phosphor has excellent luminescence thermal-stability.And the luminescence intensity of Ba3 Y3.92O9:0.08 Sm3+ phosphor at 473 K only declines by about25.75% of its initial intensity. The experimental data indicate that Ba3 Y4 O9:Sm3+ phosphor may be promising as an orange-red emitting phosphor for white light emitting diodes.
关键词: