• Laser & Optoelectronics Progress
  • Vol. 59, Issue 15, 1516007 (2022)
Pengfei Wang1、2、4、†, Hang Lin1、2、3、†,*, Shisheng Lin2, and Yuansheng Wang2
Author Affiliations
  • 1Fujian Science & Technology Innovation Laboratory for Optoelectronic Information of China, Fuzhou 350108, Fujian , China
  • 2CAS Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, Fujian , China
  • 3Engineering Research Center of Advanced Glass Manufacturing Technology, Ministry of Education, Donghua University, Shanghai 201620, China
  • 4College of Chemistry and Materials Science, Fujian Normal University, Fuzhou 350007, Fujian , China
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    DOI: 10.3788/LOP202259.1516007 Cite this Article Set citation alerts
    Pengfei Wang, Hang Lin, Shisheng Lin, Yuansheng Wang. Narrow-Band Green-Emissive β-SiAlON∶Eu2+ Phosphor-in-Glass Film for Laser Display Applications[J]. Laser & Optoelectronics Progress, 2022, 59(15): 1516007 Copy Citation Text show less
    XRD patterns of glass substrate, β-SiAlON∶Eu2+ phosphor and β-SiAlON-PiG-on-CSP
    Fig. 1. XRD patterns of glass substrate, β-SiAlON∶Eu2+ phosphor and β-SiAlON-PiG-on-CSP
    SEM observation on β-SiAlON-PiG-on-CSP
    Fig. 2. SEM observation on β-SiAlON-PiG-on-CSP
    (a) Photoluminescence (PL) and PL excitation (PLE) spectra and (b) luminescent decay curves of β-SiAlON∶Eu2+ phosphor and β-SiAlON-PiG-on-CSP
    Fig. 3. (a) Photoluminescence (PL) and PL excitation (PLE) spectra and (b) luminescent decay curves of β-SiAlON∶Eu2+ phosphor and β-SiAlON-PiG-on-CSP
    Luminescence behaviors under blue laser excitation. (a) Comparison of luminescence spectra of β-SiAlON-PiG-on-CSP and β-SiAlON-PiG-on-SP under 1 W/mm2 laser excitation; (b) schematic illustration of β-SiAlON-PiG-on-CSP configuration structure, and comparison for actual lighting effects between samples with/without photonic crystal film (direction of incident blue laser comes from right to left); (c) variations in luminescence spectra of β-SiAlON-PiG-on-CSP sample versus incident laser power; (d) corresponding dependences of converted green light power and surface temperature on incident laser power density; inset shows infrared thermal image of β-SiAlON-PiG-on-CSP under 9 W/mm2 laser excitation
    Fig. 4. Luminescence behaviors under blue laser excitation. (a) Comparison of luminescence spectra of β-SiAlON-PiG-on-CSP and β-SiAlON-PiG-on-SP under 1 W/mm2 laser excitation; (b) schematic illustration of β-SiAlON-PiG-on-CSP configuration structure, and comparison for actual lighting effects between samples with/without photonic crystal film (direction of incident blue laser comes from right to left); (c) variations in luminescence spectra of β-SiAlON-PiG-on-CSP sample versus incident laser power; (d) corresponding dependences of converted green light power and surface temperature on incident laser power density; inset shows infrared thermal image of β-SiAlON-PiG-on-CSP under 9 W/mm2 laser excitation
    Exploring mechanism of luminescence saturation. (a) Dependences of relative conversion efficiency and absorption efficiency on incident laser power density; (b) integrated PL intensity of β-SiAlON-PiG-on-CSP versus temperature; (c) schematical illustration of optical saturation mechanism of ESA and ETU
    Fig. 5. Exploring mechanism of luminescence saturation. (a) Dependences of relative conversion efficiency and absorption efficiency on incident laser power density; (b) integrated PL intensity of β-SiAlON-PiG-on-CSP versus temperature; (c) schematical illustration of optical saturation mechanism of ESA and ETU
    Performance after coupling red laser. (a) Electroluminescence spectra under 9 W/mm2 blue laser irradiation; (b) corresponding CIE color coordinate diagram, including NTSC standard color gamut and prototype light source color gamut
    Fig. 6. Performance after coupling red laser. (a) Electroluminescence spectra under 9 W/mm2 blue laser irradiation; (b) corresponding CIE color coordinate diagram, including NTSC standard color gamut and prototype light source color gamut
    Pengfei Wang, Hang Lin, Shisheng Lin, Yuansheng Wang. Narrow-Band Green-Emissive β-SiAlON∶Eu2+ Phosphor-in-Glass Film for Laser Display Applications[J]. Laser & Optoelectronics Progress, 2022, 59(15): 1516007
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