材料科学
荧光粉
光致发光
光电子学
谱线
近红外光谱
发射光谱
兴奋剂
分析化学(期刊)
光学
化学
物理
天文
色谱法
作者
Yining Wang,Mengmeng Shang,Shuai Huang,Yixin Sun,Yiying Zhu,Xiaole Xing,Peipei Dang,Jun Lin
标识
DOI:10.1002/adom.202300517
摘要
Abstract Cr 3+ ‐activated near‐infrared (NIR) phosphors are one of the most influential candidates for the new generation of intelligent NIR phosphor‐converted light‐emitting diode (pc‐LED) light sources. For spectral analysis, the broader the spectrum, the more useful information it contains. Herein, ultra‐broadband Cr‐activated Sc 2 O 3 nanophosphors, which exhibit NIR ultra‐broadband from 650 to 1600 nm, are developed by the sol–gel method. This ultra‐broadband emission originates from the presence of Cr 3+ and Cr 4+ , two luminescent centers confirmed by diffuse reflection spectra, electron paramagnetic resonance, time‐resolved photoluminescence spectra, and temperature‐dependent emission spectra. The nanophosphor exhibits excellent temperature‐sensing performance with S A = 4.102% K −1 and S R = 1.855% K −1 . Co‐doping Yb 3+ into Sc 2 O 3 nanophosphors builds the Cr 3+ ‐Yb 3+ ‐Cr 4+ model to bridge the spectral gap located at 1000 nm, forming a continuous NIR ultra‐broadband spectrum ranging from 650 to 1600 nm for the first time. Moreover, the introduction of Yb 3+ improves the thermal stability of nanophosphors from 29.49% to 50.65% at 150 °C. The NIR transmission spectra of water, ethanol, and peanut oil demonstrate that Sc 2 O 3 :Cr 3+ ‐Yb 3+ ‐Cr 4+ NIR nanophosphors favor potential applications in spectral analysis. The construction of a Cr 3+ ‐Yb 3+ ‐Cr 4+ spectral bridge for realizing NIR ultra‐broadband phosphors based on cheap blue LEDs provides novel and effective insights.
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