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Fluorescence Studies of Dy3+ Ions in Silica Sol Gel

机译:二氧化硅溶胶凝胶中DY3 +离子的荧光研究

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摘要

The fluorescence properties of Dy~(3+) ion are utilized to study the structural changes during the gel to glass transition of the silica xerogels. The fluorescence intensity ratio (yellow to blue, Y/B) is used as a measure of the symmetry of rare earth ion environment during the gel-glass conversion. The high value of the intensity ratio of gel heated to 1000 °C showed that the rare earth ions are embedded in the glassy silica network with an asymmetric environment. Fluorescence study is also used to characterize the effect of metal cation co-dopants on the state of aggregation of rare earth ions in silica sol gel. The addition of co-dopants inhibits the clustering of rare earth ions and promotes better dispersion. The inhibition of clustering is correlated with the generation of strong crystal field bonding sites for rare earth ions in the presence of co-dopants.
机译:利用Dy〜(3+)离子的荧光性能研究凝胶期间的结构变化到二氧化硅Xerogels的玻璃化转变。 荧光强度比(黄色至蓝色,Y / B)用作凝胶 - 玻璃转化期间稀土离子环境对称的量度。 加热至1000℃的凝胶的强度比的高值显示稀土离子嵌入玻璃状二氧化硅网络中,其具有不对称的环境。 荧光研究还用于表征金属阳离子共掺杂剂对二氧化硅溶胶凝胶稀土离子聚集状态的影响。 添加共掺杂剂抑制稀土离子的聚类并促进更好的分散体。 在共掺杂剂存在下,对聚类的抑制与稀土离子的强晶场粘合位点的产生相关。

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