PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
December 9, 2025Scientific Reports3 citationsOpen Access

Comprehensive analysis of structure–property–shielding relationships in Pr2O3-modified tellurite glass systems

View Full Paper
MGM.S. GaafarSMS.Y. MarzoukHEH.M. Elsaghier

Key Points

  • This research aims to analyze the structural, thermal, mechanical, and shielding properties of Pr2O3-modified tellurite glass systems.
  • Investigated the tellurite glass composition combining various oxides and lithium fluoride
  • Used radial distribution function and X-ray analysis to assess structural properties
  • Utilized deconvoluted FTIR spectra for structural characterization
  • Found transformation of trigonal pyramidal to trigonal bipyramidal units with Pr2O3 addition
  • Increased glass transition and crystallization temperatures indicating enhanced thermal stability
  • Demonstrated excellent gamma photon shielding capabilities of the modified glasses

Abstract

Abstract This work investigated the structural, thermal, mechanical, and shielding characteristics of a tellurite-based glass series with the composition 60TeO 2 –12. 5Nb 2 O 5 –12. 5ZnO– (15– x) LiF– x Pr 2 O 3, where x ranged from 0. 5 to 5. 0 mol%. The novelty of this study lay in a comprehensive analysis that combined multiple techniques. The research involved using the radial distribution function (RDF) with Gaussian fitting to determine structural parameters and the fraction of trigonal bipyramidal (TeO 4), N 4 (X-ray) representation for each glass sample. The study also utilized deconvoluted FTIR spectra to further characterize the glass structure. Results showed the transformation of trigonal pyramidal (TeO 3) tp units to trigonal bipyramidal (TeO 4) tbp units and consequently enhanced the rigidity of the glass structure with addition of Pr 2 O 3. Additionally, it established a logarithmic correlation across the entire glass series, linking the molar volume (V m) with the experimental bulk modulus (K exp ​), \: K₄ₗ₏=V₌^-\: , and explored the correlations between these properties and the power (α). The ring deformation model was applied to calculate the average atomic ring diameter. Increased Pr 2 ​O 3 ​ content enhanced the glass’s thermal stability. This was evidenced by a significant rise in its glass transition temperature and onset crystallization temperature, indicating a more rigid and stable structure. In addition, various shielding parameters were determined. The results of this investigation highlight the excellent gamma photon shielding capabilities of these glasses.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Gaafar et al. (2025) studied this question.

synapsesocial.com/papers/69401d682d562116f28f914dhttps://doi.org/10.1038/s41598-025-29373-9
Ask AI
Helpful
Bookmark
Share
View Full Paper