在P2O5-SrO-Bi2O3三元体系中,Bi2O3对磷酸盐玻璃物理、结构和γ射线屏蔽性能的影响

Z. Ramzi, W. Nachit, L. El Gaini, S. Touhtouh, K. Benkhouja
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摘要

摘要采用传统的熔融淬火工艺制备了含氧化铋的磷酸锶玻璃。x射线衍射和差示扫描量热(DSC)分析表明,当x = 5-25 mol%时,可以得到组成为70 P2O5-(30-x)SrO-xBi2O3的稳定三元玻璃。本研究考察了诸如密度、摩尔体积(Vm)、玻璃化转变温度(Tg)和结构性质等物理性质,以解释Bi-Sr取代对这些玻璃的影响。当铋的浓度在x = 5 ~ x = 10 mol%之间增加时,密度几乎呈线性增加,然后单调下降。然而,计算出的摩尔体积(Vm)却完全相反。DSC曲线显示,随着Bi2O3浓度的增加,玻璃化转变温度(Tg)从555℃下降到490℃,这是由于桥接氧数量的增加。利用红外光谱进行的结构研究显示,磷酸盐网络的结构主要包含元磷酸盐(Q2)单元,焦磷酸盐(Q1)和正磷酸盐(Q0)也有贡献。红外光谱还显示,随着Bi2O3浓度的增加和P-O-Bi键的形成,磷酸盐链在玻璃体系中解聚。射线屏蔽参数的研究表明,所制备的玻璃可用于屏蔽辐射。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Bi2O3 on the physical, structural and gamma ray shielding properties of phosphate glasses inside the ternary P2O5-SrO-Bi2O3 system
Abstract Strontium phosphate glasses containing bismuth oxide were prepared using conventional melt-quenching technique. X-ray diffraction and differential scanning calorimetry (DSC) analysis suggests that stable ternary glasses of composition 70 P2O5-(30-x)SrO-xBi2O3 can be obtained for x = 5–25 mol%. This study examines such physical properties as the density, molar volume (Vm), glass transition temperature (Tg), and structural properties in the interest of explaining the effect on these glasses of Bi-Sr substitution. An almost linear increase in the density when the concentration of bismuth increases between x = 5 and x = 10 mol% followed by monotonic decreasing is noted. However, the calculated molar volume (Vm) behaves in exactly the opposite way. DSC curves showed that the glass transition temperature (Tg) decreases by 555 °C down to 490 °C as the concentration of Bi2O3 increases, due to the increase in the number of bridging oxygens. Structural investigations performed using IR spectroscopy revealed that the structure of the phosphate network contains predominately meta-phosphate (Q2) units, with contributions from pyrophosphate (Q1) and orthophosphate (Q0). The infrared spectra also revealed depolymerization of the phosphate chains in the glass system, with increased Bi2O3 concentration and the formation of P–O–Bi bonds. The study of the gamma ray shielding parameters showed that the prepared glasses can be used for shielding radiation applications. GRAPHICAL ABSTRACT
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