CaYZrScAlO:Cr-an efficient and thermally stable garnet phosphor for high-performance NIR LEDs

High-quantum efficiency (QE) and superior luminescence thermal stability NIR phosphors are indispensable for producing advanced NIR pc-LEDs. Despite this, the broadband NIR phosphor peaking around ∼780 nm often falls short in performance. Our research focused on developing a series of CaY 2 ZrSc 1−...

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Veröffentlicht in:Journal of materials chemistry. C, Materials for optical and electronic devices Materials for optical and electronic devices, 2024-08, Vol.12 (3), p.1134-11346
Hauptverfasser: Zheng, Tianxiang, Ding, Yun, Han, Yihang, Luo, Min, Chu, Zhihan, Fan, Zihao, Cao, Hanyu, Duan, Fuyun, Xiao, Yu
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Zusammenfassung:High-quantum efficiency (QE) and superior luminescence thermal stability NIR phosphors are indispensable for producing advanced NIR pc-LEDs. Despite this, the broadband NIR phosphor peaking around ∼780 nm often falls short in performance. Our research focused on developing a series of CaY 2 ZrSc 1− x Al 3 O 12 : x Cr 3+ (CYZS: x Cr 3+ ) NIR phosphors, where x ranges from 0.01 to 0.20 mol, through strategic chemical substitutions of [Ca 2+ -Zr 4+ -Sc 3+ ] for [Y 3+ -Al 3+ -Al 3+ ] in Y 3 Al 5 O 12 :Cr 3+ (YAG:Cr 3+ ). This modification yielded broadband NIR emissions centered at ∼780 nm when stimulated with blue light. Remarkably, the optimized CYZS:0.08Cr 3+ phosphor demonstrated exceptional QE values (IQE/EQE = 78.4%/31.6%), alongside outstanding thermal stability, maintaining around 84.3% of its original intensity at 423 K. Finally, we fabricated a high-performance NIR pc-LED device by combining CYZS:0.08Cr 3+ with a blue LED chip (455 nm). The integrated NIR pc-LED boasts an impressive output power of 69.7 mW at 150 mA, along with a high photoelectric conversion efficiency of 22.2% when operating at 10 mA. Our findings indicate that CYZS: x Cr 3+ phosphors harbor promising applications in advancing NIR pc-LEDs. The optimized CYZS:0.08Cr 3+ phosphor, peaking around ∼780 nm, exhibited remarkable QE values, with IQE and EQE reaching 78% and 32% respectively.
ISSN:2050-7526
2050-7534
DOI:10.1039/d4tc02328e