Durmus, Hasan and Kilic, G. and Ilik, E. and Kavaz, E. and Güler, Ömer and Birdoğan, Selçuk and Almisned, Ghada and Tekin, H. O. (2026) Structural evolution and radiation shielding performance of nano-HfO2 doped lithium borotellurite glasses. Radiation Physics and Chemistry, 244 . ISSN 0969-806X (Print) 1879-0895 (Online)
Full text not available from this repository. (Request a copy)
Official URL: https://dx.doi.org/10.1016/j.radphyschem.2026.113831
Abstract
This study investigates the structural evolution and radiation shielding performance of lithium borotellurite glasses reinforced with nano-sized HfO2. We report on the competitive dynamics between the depolymerizing nature of the Li + network modifier and the high field strength Hf4+ nano-dopant, a relationship not previously explored in this matrix. Structural analysis via XRD and TEM reveals that the glass remains fully amorphous with homogeneously dispersed Hf rich nanodomains up to 4 mol%. A critical solubility threshold is identified at 6 mol%, where the precipitation of HfO2 and HfTe3O8 crystalline phases marks a distinct transition from an amorphous state to a glass-ceramic microstructure. Physical property measurements indicate that Hf4+ ions primarily occupy interstitial free volumes, leading to enhanced material density without significant network dilation. The incorporation of nano-HfO2 significantly augments gamma-ray attenuation efficiency, particularly in the low-energy region, by substantially increasing the effective atomic number and reducing the half value layer. Furthermore, the glasses exhibit robust fast-neutron shielding capabilities, outperforming conventional materials such as graphite and B4C. These findings establish nano-HfO2 as a potent structural and radiative modifier, providing a novel roadmap for designing high-density, multifunctional glass-ceramic shields for advanced nuclear applications.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | Fast-neutron shielding; Gamma-ray attenuation; Glass-ceramic transition; Lithium boro-tellurite glass; Nano-HfO2doping |
| Divisions: | Sabancı University Nanotechnology Research and Application Center |
| Depositing User: | Selçuk Birdoğan |
| Date Deposited: | 29 Apr 2026 10:57 |
| Last Modified: | 29 Apr 2026 10:57 |
| URI: | https://research.sabanciuniv.edu/id/eprint/53906 |

