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FTIR measurements for structural probing of rare-earth sol-gel silica glass system co-doped with Al3+

机译:FTIR测量Al 3 + 共掺杂稀土溶胶-凝胶石英玻璃体系的结构

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The Al co-doping in silica matrix doped with rare earth (RE) namely Er3+, Ho3+and Eu3+ ions have been studied. The Al co-doping enhances the emission properties of the Sol-Gel glass doped RE samples. FTIR measurements have been used in this study to probe the aluminum''s behavior inside the silica network. The FTIR absorption bands 462.2, 810, 1103 cm−1 of the Si-O-Si and 685, 786 cm−1 of the Al-O bands have been used as principle absorption bands to explain the effect of increasing the Al∶RE molar ratios, 4, 8, 10,as well as without Al co-dopant, on the doping process. The emission spectra of the prepared samples supported some concepts of the mechanism of aluminum action as co-dopant in the sol-gel silica matrices. The emission bands due to the (4I13/2 → 4I15/2 ∼ 1536 nm), (5S2 → 5I7 ∼ 753 nm) and (5D0 → 7F2 ∼ 619 nm) transitions of Er3+, Ho3+ and Eu3+ ions, respectively, have been enhanced at Al∶RE molar ratio of 10 comparing with 4 and 8. In contrast, the case of without Al co-doping shows strong quenched in these transitions.
机译:二氧化硅基质中的Al共掺杂掺杂有稀土(RE)即ER 3 + ,HO 3 + 和EU 3 + 离子已经研究过。 Al共掺杂增强了溶胶玻璃掺杂Re样品的排放性能。本研究中已使用FTIR测量来探测铝合金网络内的铝制行为。 SI-O-Si和685,786cm,786cm -1 / sup>的FTIR吸收带462.2,810,1103cm -1 已使用Al-O频带原理吸收带解释了在掺杂过程中增加AlT眼摩尔比,4,8,10,以及没有Al Co-Dopant的效果。制备样品的发射光谱支持铝作用机理的一些概念作为溶胶 - 凝胶二氧化硅基质中的共掺杂剂。由于( 4 I 13/2 4 i 15/2 〜1536nm)引起的发射带( 5 s 2 5 I 7 〜753 nm)和( 5 D 0 7 F 2 〜619 nm)ER 3 + ,HO 3的转换+ / sup>和eu 3 + 离子分别在Al:重叠10与4和8比较的摩尔比得到增强。相比之下,没有Al Co-Doping的情况表现出强烈的情况在这些过渡中淬火。

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