荧光粉
激发态
发光
吸收(声学)
发射光谱
材料科学
发光二极管
吸收光谱法
能量转移
分析化学(期刊)
光电子学
原子物理学
谱线
化学
光学
物理
复合材料
色谱法
天文
作者
Xinguo Zhang,Liya Zhou,Qi Pang,Jianxin Shi,Menglian Gong
摘要
The Ce3+ → Tb3+ → Eu3+ energy-transfer process enables Eu3+5D0 → 7FJ line emission to be sensitized by the allowed Ce3+ 4f1 → 5d1 absorption transition in near-ultraviolet (NUV) and violet spectral regions. This energy-transfer strategy is applied in Y2SiO5:Ce3+, Tb3+, Eu3+ powders, leading to line-emitting red phosphors that can be excited by short-wavelength InGaN LEDs. The blue, green, and red colors can be tuned by the ratio of Ce3+/Tb3+/Eu3+. Furthermore, the energy-transfer efficiencies and corresponding mechanisms are discussed in detail, and the thermal stability is evaluated. The results suggest that the optimal composition phosphor Y2SiO5: 0.01Ce3+, 0.50Tb3+, 0.01Eu3+, which exhibits an intense Eu3+ red 4f–4f sharp emission with a strong 4f–5d absorption band of Ce3+ at the NUV region, could serve as a potential broadband-excited and narrow line red phosphor for NUV LEDs.
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