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April 23, 2026Journal of Thermoplastic Composite Materials0 citations

Synthesis, structural characterization, and radiation stability of TiO 2 /TeO 2 /B 2 O 3 ternary glass via sol-gel method

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SFS. FaresChina Atomic Energy AuthorityAKAhmed Hassan KornaBABadriah AlshahraniKing Khalid University

Key Points

  • This research aims to synthesize and characterize a TiO2/TeO2/B2O3 ternary glass and assess its radiation stability and optical properties.
  • Synthesis of ternary glass using sol-gel method
  • Structural analysis performed using X-ray diffraction, FTIR, Raman spectroscopy, and SEM
  • Optical characterization through UV-Vis spectroscopy and radiation stability testing
  • The ternary glass shows a reduced optical band gap, enhancing visible light absorption
  • Maintained amorphous structure after gamma radiation doses of 50 kGy and 75 kGy
  • Crystalline phase emergence at 100 kGy with a further reduced band gap to 2.9 eV

Abstract

This study reports the successful synthesis and characterization of a novel TiO 2 /TeO 2 /B 2 O 3 ternary glass system prepared via the sol-gel method. Comprehensive analysis using X-ray diffraction (XRD), Fourier-transform infrared (FTIR) spectroscopy, Raman spectroscopy, and scanning electron microscopy (SEM) confirmed a uniform, predominantly amorphous structure in the as-prepared state. Optical characterization by UV-Vis spectroscopy revealed a significant reduction in the optical band gap compared to pure TiO 2 , effectively shifting the absorption edge into the visible light region. A critical finding of this research is the material’s dose-dependent radiation stability. The ternary glass maintained its amorphous network after exposure to gamma radiation doses of 50 kGy and 75 kGy, demonstrating exceptional structural robustness. A radiation-induced structural evolution from the amorphous phase to the crystalline anatase phase of TiO 2 was only observed at a higher absorbed dose of 100 kGy. This evolution, coupled with a further reduction in the optical band gap to 2.9 eV, highlights the potential of this ternary glass for advanced applications in visible-light photocatalysis and optoelectronics where durability in high-radiation environments is essential.

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Cite This Study

Fares et al. (2026) studied this question.

synapsesocial.com/papers/69e9b80e85696592c86eb835https://doi.org/10.1177/08927057261444582
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