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Characterization by combined optical and FT infrared spectra of 3d-transition metal ions doped-bismuth silicate glasses and effects of gamma irradiation

机译:3d过渡金属离子掺杂铋硅酸盐玻璃的光学和FT红外光谱组合表征和伽马辐射的影响

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Optical and infrared absorption spectral measurements were carried out for binary bismuth silicate glass and other derived prepared samples with the same composition and containing additional 0.2% of one of 3d transition metal oxides. The same combined spectroscopic properties were also measured after subjecting the prepared glasses to a gamma dose of 8 Mrad. The experimental optical spectra reveal strong UV-near visible absorption bands from the base and extended to all TMs-doped samples and these specific extended and strong UV-near visible absorption bands are related to the contributions of absorption from both trace iron (Fe~(3+)) ions present as contaminated impurities within the raw materials and from absorption of main constituent trivalent bismuth (Bi~(3+)) ions. The strong UV-near visible absorption bands are observed to suppress any further UV bands from TM ions. The studied glasses show obvious resistant to gamma irradiation and only small changes are observed upon gamma irradiation. This observed shielding behavior is related to the presence of high Bi~(3+) ions with heavy mass causing the observed stability of the optical absorption. Infrared absorption spectra of the studied glasses reveal characteristic vibrational bands due to both modes from silicate network and the sharing of Bi-O linkages and the presence of TMs in the doping level (0.2%) causes no distinct changes within the number or position of the vibrational modes. The presence of high Bi_2O_3 content (70 mol%) appears to cause stability of the structural building units towards gamma irradiation as revealed by FTIR measurements.
机译:对二元铋硅酸盐玻璃和其他衍生的具有相同组成并含有额外0.2%的3d过渡金属氧化物之一的制备样品进行了光学和红外吸收光谱测量。在将制备的玻璃置于8 Mrad的伽玛剂量后,还测量了相同的组合光谱性质。实验光谱揭示了从基部到所有掺有TMs的样品都有很强的UV可见吸收带,这些特定的扩展和强UV可见吸收带与两种痕量铁(Fe〜( 3+))离子作为原料中的污染杂质而存在,并且是由于吸收了主要成分三价铋(Bi〜(3+))离子而产生的。观察到强紫外线附近的可见吸收带可以抑制来自TM离子的任何其他紫外线带。所研究的眼镜显示出明显的抵抗伽玛射线的能力,并且在伽玛射线辐照下仅观察到很小的变化。这种观察到的屏蔽行为与质量较高的高Bi〜(3+)离子的存在有关,从而导致观察到的光吸收稳定性。所研究玻璃的红外吸收光谱揭示了特征性的振动带,这是由于硅酸盐网络和共享Bi-O键的两种模式引起的,并且掺杂水平(0.2%)的TM的存在不会导致其数量或位置发生明显变化。振动模式。 FTIR测量表明,高Bi_2O_3含量(70 mol%)的存在似乎导致结构建筑单元对伽马辐射的稳定性。

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