ALMisned Ghada, Elshami Wiam, Issa Shams A M, Susoy Gulfem, Zakaly Hesham M H, Algethami Merfat, Rammah Y S, Ene Antoaneta, Al-Ghamdi S A, Ibraheem Awad A, Tekin H O
Department of Physics, College of Science, Princess Nourah Bint Abdulrahman University, Riyadh 11671, Saudi Arabia.
Medical Diagnostic Imaging Department, College of Health Sciences, University of Sharjah, Sharjah 27272, United Arab Emirates.
Materials (Basel). 2021 Dec 13;14(24):7703. doi: 10.3390/ma14247703.
The direct influence of La ions on the gamma-ray shielding properties of cobalt-doped heavy metal borate glasses with the chemical formula 0.3CoO-(80-x)BO-19.7PbO-xLaO: x = 0, 0.5, 1, 1.5, and 2 mol% was examined herein. Several significant radiation shielding parameters were evaluated. The glass density was increased from 3.11 to 3.36 g/cm with increasing La ion content from 0 to 2 mol%. The S5 glass sample, which contained the highest concentration of La ions (2 mol%), had the maximum linear (μ) and mass (μ) attenuation coefficients for all photon energies entering, while the S1 glass sample free of La ions possessed the minimum values of μ and μ. Both the half value layer (T) and tenth value layer (TVL) of all investigated glasses showed a similar trend of (T, TVL) > (T, TVL) > (T, TVL) > (T, TVL) > (T, TVL). Our results revealed that the S5 sample had the highest effective atomic number (Z) values over the whole range of gamma-ray energy. S5 had the lowest exposure (EBF) and energy absorption (EABF) build-up factor values across the whole photon energy and penetration depth range. Our findings give a strong indication of the S5 sample's superior gamma-ray shielding characteristics due to the highest contribution of lanthanum oxide.
本文研究了镧离子对化学式为0.3CoO-(80-x)BO-19.7PbO-xLaO(x = 0、0.5、1、1.5和2 mol%)的钴掺杂重金属硼酸盐玻璃的γ射线屏蔽性能的直接影响。评估了几个重要的辐射屏蔽参数。随着镧离子含量从0增加到2 mol%,玻璃密度从3.11 g/cm³增加到3.36 g/cm³。含有最高浓度镧离子(2 mol%)的S5玻璃样品,对于所有入射光子能量,其线性(μ)和质量(μ)衰减系数最大,而不含镧离子的S1玻璃样品的μ和μ值最小。所有研究玻璃的半值层(T)和十分之一值层(TVL)都呈现出类似的趋势:(T, TVL) > (T, TVL) > (T, TVL) > (T, TVL) > (T, TVL)。我们的结果表明,在整个γ射线能量范围内,S5样品具有最高的有效原子序数(Z)值。在整个光子能量和穿透深度范围内,S5的暴露(EBF)和能量吸收(EABF)积累因子值最低。我们的研究结果有力地表明,由于氧化镧的贡献最大,S5样品具有优异的γ射线屏蔽特性。