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◆ International Journal of Ceramic Engineering & Science2025-10-17· Borosilicate glass

Impact of La <sub>2</sub> O <sub>3</sub> Substitution on the Structural, Thermal, and Radiation Shielding Properties of Sodium–Barium Borosilicate Glasses

Yurii Hordieiev, A. V. Zaichuk

原始摘要(英文原文)· Original abstract
ABSTRACT This study investigates the impact of progressively substituting sodium oxide (Na 2 O) with lanthanum oxide (La 2 O 3 ) in sodium–barium borosilicate glasses with the general formula 60B 2 O 3 –20BaO–10SiO 2 –(10‐m)Na 2 O–mLa 2 O 3 ( m = 0, 2.5, 5, 7.5, and 10 mol%). Structural, thermal, physical, and gamma‐ray shielding properties were comprehensively analyzed to elucidate composition‐structure‐property relationships. X‐ray diffraction and FTIR analyses confirmed significant structural modifications and preserved amorphous characteristics with increased La 2 O 3 content. Thermal analyses demonstrated a marked enhancement in glass transition temperature (from 538°C to 630°C) and crystallization resistance, associated with increased La 2 O 3 content. The 5 mol% La 2 O 3 composition showed the highest thermal stability (Δ T = 234°C). Density increased by 19.4% (3.09–3.69 g/cm 3 ), enhancing radiation shielding performance. Theoretical shielding assessment via the PSD/Phy‐X platform revealed that the mass attenuation coefficients improved by 52% at 0.015 MeV, whereas the half‐value layer decreased by nearly 30% at 15 MeV in the fully substituted glass. These findings demonstrate that La 2 O 3 substitution offers a promising approach for tailoring borosilicate glasses for applications requiring enhanced thermal stability and radiation shielding performance.
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Impact of La <sub>2</sub> O <sub>3</sub> Substitution on the Structural, Thermal, and Radiation Shielding Properties of Sodium–Barium Borosilicate Glasses — 科研速览 Science Skim