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基于 Cr 掺杂荧光粉和蓝光 LED 芯片的宽带近红外光源。

Broadband near-infrared light source derived from Cr-doped phosphors and a blue LED chip.

出版信息

Opt Lett. 2018 Nov 1;43(21):5251-5254. doi: 10.1364/OL.43.005251.

DOI:10.1364/OL.43.005251
PMID:30382980
Abstract

NIR-emitting YAl(BO):Cr/Yb (YAB:Cr/Yb) and NaScSiO:Cr (BSSO:Cr) phosphors were demonstrated as luminescent converters for broadband NIR phosphor-converted LEDs (pc-LEDs). YAB:Cr/Yb phosphors show emissions in 670-800 nm (Cr emission) and 950-1050 nm (Yb emission) upon excitation at 450 nm. In the BSSO host, Cr ions occupy Sc sites with relatively weak crystal field, and thus a broadband Cr emission at longer wavelengths of 750-950 nm is found for BSSO:Cr phosphors. Moreover, temperature-dependent spectral studies indicate that both YAB:Cr/Yb and BSSO:Cr phosphors exhibit good thermal stability, and more than 80% of the initial emission intensities can be sustained at 150°C. A NIR pc-LED prototype was fabricated by integrating these two phosphors with a blue LED chip (∼450  nm), which generated a broadband emission in the NIR spectral range from 780 to 1050 nm. A NIR light output power of ∼26  mW was achieved at the injection current of 100 mA, with the corresponding energy conversion efficiency of ∼8.6%.

摘要

NIR 发光 YAl(BO₃):Cr/Yb(YAB:Cr/Yb) 和 NaScSiO₄:Cr(BSSO:Cr) 荧光粉被证明是宽带近红外荧光粉转换 LED(pc-LED)的发光转换材料。YAB:Cr/Yb 荧光粉在 450nm 激发下分别在 670-800nm(Cr 发射)和 950-1050nm(Yb 发射)处有发射。在 BSSO 基质中,Cr 离子占据具有较弱晶体场的 Sc 位,因此 BSSO:Cr 荧光粉在 750-950nm 波长处有宽带 Cr 发射。此外,温度相关的光谱研究表明,YAB:Cr/Yb 和 BSSO:Cr 荧光粉都表现出良好的热稳定性,在 150°C 时仍能保持初始发射强度的 80%以上。通过将这两种荧光粉与蓝色 LED 芯片(∼450nm)集成,制备了近红外 pc-LED 原型,在 780-1050nm 的近红外光谱范围内产生了宽带发射。在 100mA 的注入电流下,实现了约 26  mW 的近红外光输出功率,相应的能量转换效率约为 8.6%。

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引用本文的文献

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Advances in engineering near-infrared luminescent materials.工程近红外发光材料的进展
iScience. 2021 Feb 7;24(3):102156. doi: 10.1016/j.isci.2021.102156. eCollection 2021 Mar 19.
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Strategies to approach high performance in Cr-doped phosphors for high-power NIR-LED light sources.
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Light Sci Appl. 2020 May 15;9:86. doi: 10.1038/s41377-020-0326-8. eCollection 2020.
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Structural, Electronic and Vibrational Properties of YAl(BO).YAl(BO)的结构、电子和振动性质
Materials (Basel). 2020 Jan 23;13(3):545. doi: 10.3390/ma13030545.