材料科学
发光
光致发光
纳米晶
荧光粉
发光二极管
量子产额
近红外光谱
二极管
光发射
有机发光二极管
可见光谱
纳米技术
波长
蓝光
氧化物
量子效率
电致发光
再结晶(地质)
制作
热的
生物成像
激子
光电子学
光谱学
固态照明
作者
Wenbo Ji,Fengmei Zhu,Yuan Gao,Qiu Jianbei
标识
DOI:10.1021/acsami.5c10839
摘要
Near-infrared (NIR) light sources play a significant role in detection and therapies in healthcare, agriculture, and other fields for their outstanding ability of tissue penetration, excellent safety features, and useful bandwidth that match well with the vibration of chemical bonds. NIR phosphor-converted light-emitting diode (NIR pc-LED) devices are considered to be one of the most promising NIR light sources due to their unique advantages, including tunable wavelength, high efficiency, long life, low cost, and compact size. Compared to traditional resin-based casting technology, which has shortcomings such as complicated packaging process, poor thermal conductivity, and aging of plastic materials, transparent oxide glass-ceramics (GCs) have excellent optoelectronic properties, high physical and chemical stability, simple manufacturing processes, etc. Here, we report the synthesis of a series of Cr 3+ -doped Ba 2– x Sr x NaNb 5 O 15 nanocrystals embedded within GCs, which exhibit an ultrabroadband NIR emission covering 600 ∼ 1500 nm under 460 nm blue light excitation, by a two-stage heating-quenching and recrystallization method. It was noticed that as Ba 2+ ions in the matrix were increasingly replaced by Sr 2+ ions, the peak of the corresponding NIR emission of the GCs continuously shifted from ∼823 to 855 nm, and a photoluminescence quantum yield of ∼39.13% was achieved with the GCs NIR phosphor with an optimal composition. Mechanistic studies showed that the emission originates from the 4 T 2 → 4 A 2 spin-allowed transition of Cr 3+ ions. NIR pc-LED light source devices were prepared from the optimized GCs and blue light LED chips, and their potential applications in night-vision imaging and nondestructive testing were demonstrated. Our study provides an innovative approach for the design of materials of continuous solid solution transparent oxide GCs with tunable wavelengths and their applications.
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