Investigation of Er3+ ions reinforced zinc-phosphate glasses for ionizing radiation shielding applications.
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Date
2021
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MDPI
Abstract
Melt quenching technique is used for preparing glasses with chemical formula (70P2O5)
(16 x)CdO–(14ZnO)–(xEr2O3), (x = 1–6 mol%). These glasses were named Er1, Er2, Er3, Er4, Er5,
and Er6, respectively. Photon buildup factors, fast neutron absorption, and electron stopping of the
prepared glasses were examined. Glasses’ density was varied from 3.390 0.003 for the Er1 glass
sample to 3.412 0.003 for the Er6 glass sample. The Buildup factor (BUF) spectra have relatively
higher values in the Compton Scattering (CS) dominated areas compared to both Photoelectric effect
(PE), and Pair Production (PP) dominated energy regions. The highest BUF appeared at the Er atom
K-absorption edge, whose intensity increases as the molar concentration of Er2O3 in the glasses increases. The photon absorption efficiency (PAE) of the glasses increases according to the trend (PAE)Er1 < (PAE)Er2 < (PAE)Er3 < (PAE)Er4 < (PAE)Er5 < (PAE)Er6. Fast neutron removal cross-section, FNRC( )values ftheglassesobtainedviacalculation varied from 0.1045–0.1039 cm 1 for Er1–Er6. Furthermore, the continuous slowing down approximation mode (CSDA) range enhances the kinetic energy of electrons for all glasses. Generally, results revealed that the investigated glasses could be applied for radiation shielding and dosimetric media.
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58. Zakaly, H. M., Ene, A., Olarinoye, O. I., Marzouk, S. Y., Abdel-Hafez, S. H., Shams, M. S., & Rammah, Y. S. (2021). Investigation of Er3+ ions reinforced zinc-phosphate glasses for ionizing radiation shielding applications. Materials, 14(22), 6769.