Two-layered Lu3Al5O12:Ce/ Y3Al5O12:Ce composite phosphor converter for white light-emitting diode devices

被引:0
|
作者
Markovskyi A. [1 ]
Gorbenko V. [1 ]
Nizhankovskiy S. [2 ]
Zorenko T. [1 ]
Fedorov A. [2 ]
Zorenko Y. [1 ]
机构
[1] Institute of Physics, Kazimierz Wielki University in Bydgoszcz, Powstańców Wielkopolskich str., 2, Bydgoszcz
[2] Institute for Single Crystals, National Academy of Sciences of Ukraine, av. Nauki 60, Kharkiv
来源
Optical Materials: X | 2024年 / 22卷
关键词
Ce[!sup]3+[!/sup] ions; Composite photoconverter; Liquid phase epitaxy; LuAG; Single crystalline films; Single crystals; WLED; YAG;
D O I
10.1016/j.omx.2024.100329
中图分类号
学科分类号
摘要
Thermal management poses a significant challenge for conventional phosphor-converted white LEDs (pc-WLEDs), thereby affecting their overall efficiency. Single crystal phosphors (SCPs), such as Y3Al5O12:Ce (YAG:Ce), exhibit enhanced efficiency and thermal stability in comparison to conventional powder phosphors. The garnet Lu3Al5O12:Ce (LuAG) has been characterized as a green phosphor with even higher than YAG:Ce temperature stability, making it suitable for use in high-power WLEDs. However, there are some difficulties in obtaining suitable components with longer emission wavelengths in LuAG:Ce phosphors. As a way to solve this issue, the article suggests the growth of LuAG:Ce single crystalline films onto YAG:Ce substrates, thereby producing a composite color converter that possesses adjustable parameters. This paper presents a comprehensive analysis of the fabrication process as well as the characteristics of a two-layered LuAG:Ce film/YAG:Ce substrate composite color converter. The results of investigations of the structural, luminescence and photoconversion characteristics of composite color converters were presented as well. This study includes also consideration of the effect of varying LuAG:Ce film thicknesses and concentrations of Ce3+ in YAG:Ce substrates on photoconversion characteristics of composite converters. © 2024
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