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Investigation of photon, neutron and proton shielding features of H<sub>3</sub>BO<sub>3</sub>-ZnO-Na<sub>2</sub>O-BaO glass system

Investigation of photon, neutron and proton shielding features of H<sub>3</sub>BO<sub>3</sub>-ZnO-Na<sub>2</sub>O-BaO glass system

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The current study aims to explore the shielding properties of multi-component borate-based glass series. Seven glass-samples with composition of (80-y)H<sub>3</sub>BO<sub>3</sub>-10ZnO-10Na<sub>2</sub>O-yBaO where (y = 0, 5, 10, 15, 20, 25 and 30 mol.%) were synthesized by melt-quench method. Various shielding features for photons, neutrons, and protons were determined for all prepared samples. XCOM, Phy-X program, and SRIM code were performed to determine and explain several shielding properties such as equivalent atomic number, exposure build-up factor, specific gamma-ray constants, effective removal cross-section (&#x03A3;<sub>R</sub>), neutron scattering and absorption, Mass Stopping Power (MSP) and projected range. The energy ranges for photons and protons were 0.015-15 MeV and 0.01-10 MeV, respectively. The mass attenuation coefficient (&#x03BC;/&#x03C1;) was also determined experimentally by utilizing two radioactive sources (<sup>166</sup>Ho and <sup>137</sup>Cs). Consistent results were obtained between experimental and XCOM values in determining &#x03BC;/&#x03C1; of the new glasses. The addition of BaO to the glass matrix led to enhance the &#x03BC;/&#x03C1; and specific gamma-ray constants of glasses. Whereas the remarkable reductions in &#x03A3;<sub>R</sub>, MSP, and projected range values were reported with increasing BaO concentrations. The acquired results nominate the use of these glasses in different radiation shielding purposes.

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