半最大全宽
材料科学
荧光粉
波长
发光
光致发光
光谱学
近红外光谱
光电子学
发光二极管
光学
吸收(声学)
分析化学(期刊)
物理
化学
量子力学
色谱法
复合材料
作者
Shuai Huang,Yan Yu,Mengmeng Shang,Yining Wang,Yixin Sun,Peipei Dang,Jun Lin
标识
DOI:10.1002/adom.202202291
摘要
Abstract Cr 3+ ‐activated near‐infrared (NIR) phosphors have attracted wide attention owing to applications in phosphor‐converted light‐emitting diodes (pc‐LED) for spectroscopy. Because a broader spectrum covers more information to detect, the width of the spectrum is an important parameter to consider. Here, the blue LED excitable ultra‐broadband Cr 3+ ‐activated LiInGeO 4 phosphors, which exhibit unprecedented long‐wavelength NIR emission with a wide full‐width at half maximum (FWHM) of 305 nm, are developed. The overall emission tuning from 1165 to 875 nm with broadened FWHM from 305 to 508 nm is realized through designing continuous solid solution hosts of LiIn 1− z Sc z GeO 4 /(LiIn) 1− y Mg 2 y GeO 4 and finite solid solution hosts of (LiIn) 1− y Zn 2 y GeO 4 :Cr 3+ . The observation of such long‐wavelength NIR from Cr 3+ not Cr 4+ is studied and confirmed by electron paramagnetic resonance, X‐ray absorption near‐edge structure, and steady‐/transient‐state photoluminescence. The formation of finite solid solutions induces the change in the local structure of Cr 3+ that ultimately leads to the observation of super broadband (FWHM = 508 nm) luminescence. The luminescence mechanism is discussed in this study. Finally, this study demonstrates that the as‐synthesized phosphors with tunable NIR luminescence can be well used in NIR pc‐LEDs for spectroscopy detection.
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