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氧化铋对钙钠硼酸盐玻璃的结构、光学和伽马射线屏蔽性能的影响。

Impact of bismuth oxide on structural, optical and gamma-ray shielding properties of calcium-sodium-borate glasses.

机构信息

Department of Physics, Kuvempu University, Shankaraghatta, Shimoga 577 451, India.

Department of Physics, Gulbarga University, Kalaburagi 585106, India.

出版信息

Radiat Prot Dosimetry. 2024 Jul 17;200(11-12):1207-1215. doi: 10.1093/rpd/ncae066.

Abstract

In the present study, we have prepared six glass samples of bismuth borate using the melt-quenching method with the composition (70-x)B2O3-10CaO-20Na2O-xBi2O3; x = 0, 3, 6, 9, 12 and 15 mol%. The density of the prepared glasses was determined using Archimedes principle. The X-ray diffraction patterns provide confirmation of the amorphous nature of the prepared samples, whereas the Fourier transform infrared measurements pointed to the existence of structural units like BO3, BO4, BiO3 and BiO6 within the glass network. An assessment of the optical absorption spectra unveiled that with the increase in the bismuth oxide content, there was a decrease observed in both the direct and indirect band gap energies. Specifically, they decreased from 3.40 to 2.79 eV and from 3.10 to 2.46 eV, respectively. The properties related to gamma ray attenuation, including the mass attenuation coefficient (μm), effective atomic number (Zeff), half-value layer (HVL) and mean free path (MFP), were examined for all the glass samples. This investigation was carried out using the Phy-X/PSD software, covering the energy range from 0.511 to 1.332 MeV. Out of all the samples, Bi-15, featuring the highest Bi2O3 content, demonstrated the highest μm, Zeff, the smallest HVL and MFP. These results suggest that the glass with 15 mol% of Bi2O3 offers the most effective gamma radiation shielding performance. Moreover, the glasses examined in this study exhibit superior radiation shielding characteristics compared with specific concrete types, namely, ordinary concrete, Hematite serpentine concrete and barite concrete, as well as commercial glasses such as RS-360 and RS-253.

摘要

在本研究中,我们使用熔融淬火法制备了六种组成分别为(70-x)B2O3-10CaO-20Na2O-xBi2O3(x=0、3、6、9、12 和 15 mol%)的硼酸铋玻璃样品。使用阿基米德原理测定了制备玻璃的密度。X 射线衍射图谱证实了所制备样品的非晶态性质,而傅里叶变换红外测量则表明在玻璃网络中存在 BO3、BO4、BiO3 和 BiO6 等结构单元。对光学吸收光谱的评估表明,随着氧化铋含量的增加,直接和间接带隙能均观察到下降。具体而言,它们分别从 3.40 降至 2.79 eV 和从 3.10 降至 2.46 eV。研究了所有玻璃样品的γ射线衰减相关性能,包括质量衰减系数(μm)、有效原子序数(Zeff)、半值层(HVL)和平均自由程(MFP)。这项研究使用 Phy-X/PSD 软件在 0.511 至 1.332 MeV 的能量范围内进行。在所有样品中,氧化铋含量最高的 Bi-15 表现出最高的 μm、Zeff、最小的 HVL 和 MFP。这些结果表明,含 15 mol%氧化铋的玻璃提供了最有效的γ射线屏蔽性能。此外,与特定类型的混凝土(如普通混凝土、赤铁矿蛇纹石混凝土和重晶石混凝土)以及商业玻璃(如 RS-360 和 RS-253)相比,本研究中测试的玻璃具有更好的辐射屏蔽特性。

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