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Blue light emission from trivalent cerium doped in sol-gel silica glass

机译:三价铈的蓝色光发射掺杂在溶胶 - 凝胶二氧化硅玻璃中

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Rare earths in glass matrices are promising for active optical devices as amplifiers and lasers. Emission originating from d-f transitions in sol-gel glass has not been studied very often, while those based on f-f transitions were widely utilized. However, d-f emission in rare earths is very important because of their strong oscillator strength and broad emission widths suitable for the application to scintillators and solid-state lasers. Co-doping of aluminum in sol-gel synthesis was known to be effective for the emission enhancement of trivalent terbium and europium. Recently, we applied aluminum co-doping to cerium and europium systems in sol-gel glass to succeed in the observation of strong blue light emission originating from d-f transitions. Glass samples were prepared with conventional sol-gel process where tetramethylorthosilicate was hydrolyzed in the mixture of water, ethanol and dimethylformamide with nitric acid catalyst. After adding cerium nitrate and aluminum nitrate, the solution experienced drying followed by calcination at 1,050°C under air environment. When molar ratio of cerium to silicon was adjusted at 0.1% and Al concentration was varied in 0.1 ~ 2.0%, transparent glass products showed bright and broad blue photoluminescence under UV illumination. The fluorescence lifetimes were found to be about 50 ~ 90 ns, indicating that the emission was due to d-f transitions. Considering the simplicity of the process, blue phosphors based on sol-gel glass will be very promising for future applications.
机译:玻璃矩阵中的稀土是有源光学器件作为放大器和激光器。源自溶胶 - 凝胶玻璃中的D-F转变的发射尚未经常研究,而基于F-F转变的那些被广泛利用。然而,由于它们的强大振荡器强度和适用于闪烁体和固态激光器的宽度发射宽度,稀土的D-F非常重要。已知溶胶合成中铝的共掺杂是有效的三价铽和铕的排放增强。最近,我们将铝合金与铈和铕体系应用于溶胶 - 凝胶玻璃中的铈和铕体系,以在源自D-F转变的强蓝光发射中取得成功。用常规的溶胶 - 凝胶工艺制备玻璃样品,其中用硝酸催化剂在水,乙醇和二甲基甲酰胺的混合物中水解四甲醇硅酸盐。在加入硝酸铈和硝酸铝后,溶液经历干燥,然后在空气环境下在1,050℃下进行煅烧。当在0.1%时调节铈与硅的摩尔比,并且在0.1〜2.0%的Al浓度变化时,透明玻璃产品在紫外线照明下显示出明亮和宽的蓝色光致发光。发现荧光寿命为约50〜90ns,表明发射是由于D-F的转变。考虑到该过程的简单性,基于溶胶 - 凝胶玻璃的蓝色磷光体对于未来的应用非常有前途。

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