Gamma Rays Interactions with Strontium Borate Glasses Doped with First-Row Transition Metal Oxides

H. E. Batal, F. ElBatal, A. Abdelghany
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引用次数: 14

Abstract

Optical and FT infrared absorption spectroscopic studies were carried out to investigate the spectral properties of prepared undoped and 3d transition metal oxides-doped-strontium borate glasses. The same measurements were repeat- ed after gamma-irradiation of the samples with a dose of 8 Mrad (8  10 4 Gy). The undoped strontium borate glass before irradiation exhibits a broad strong UV absorption which is related to unavoidable trace iron (Fe 3+ ions) impurities contam- inated within the raw materials used for the preparation of this glass. Examination of the optical spectra of TMs-doped glasses reveals extra characteristic UV-visible bands due to the respective doping 3d transition metal ions. Gamma irradia- tion of the undoped strontium borate glass produces induced defects within the UV and visible regions while the TMs- doped glasses reveal limited variations due to shielding effects of some TM ions in this specific host strontium borate doped glasses towards gamma irradiation. Infrared absorption spectra of the prepared glasses reveal characteristic vibrational bands due to both triangular and tetra- hedral borate groups within the wavenumber range 1200-1600 cm -1 and 800-1200 cm -1 , respectively. The addition of 3d TM dopants (0.2 %) causes no distinct variations in the main IR vibrational bands because of the low level of TM ions and their housing in the glass network structure as modifiers. Also, gamma irradiation causes no changes in the number or position of the main characteristic IR vibration bands due to the quite stability of the base glass containing high content of heavy metal (Sr 2+ ) cations.
伽马射线与掺杂第一排过渡金属氧化物的硼酸锶玻璃的相互作用
利用光学和红外吸收光谱研究了制备的未掺杂和三维过渡金属氧化物掺杂硼酸锶玻璃的光谱特性。在样品以8 Mrad(810 4 Gy)的剂量辐照后,重复同样的测量。辐照前未掺杂的硼酸锶玻璃显示出广泛的强紫外吸收,这与制备该玻璃的原料中不可避免地含有微量铁(Fe 3+离子)杂质有关。通过对tms掺杂玻璃的光谱分析,发现了由于各自掺杂了三维过渡金属离子而产生的额外的特征紫外可见带。未掺杂硼酸锶玻璃的伽马辐射在紫外区和可见光区产生诱导缺陷,而TMs掺杂玻璃显示有限的变化,这是由于某些TM离子在这种特定的宿主硼酸锶掺杂玻璃中对伽马辐射的屏蔽作用。红外吸收光谱显示出三角形和四面体硼酸基团分别在1200 ~ 1600 cm -1和800 ~ 1200 cm -1波长范围内的特征振动带。添加3d TM掺杂剂(0.2%)后,由于TM离子的含量较低,并且它们作为改性剂驻留在玻璃网络结构中,因此主要红外振动带没有明显变化。此外,由于含有高含量重金属(Sr 2+)阳离子的基玻璃相当稳定,伽马辐照不会引起主要特征红外振动带的数量或位置的变化。
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