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March 7, 20260 citations

Transition metal-doped glasses for radiation shielding applications

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CMChandrasekhar MaalegoundlaKKKotha Aruna KumariRSRajesham Siddoju

Key Points

  • The research aims to assess how compositional changes influence radiation shielding in doped boro-bismuth glasses.
  • Synthesized manganese dioxide-doped boro-bismuth glasses with PbF2 and CaF2 bases.
  • Varying Al2O3 concentrations from 3 to 15 mol% was implemented.
  • Used XRD analysis to confirm glass structure.
  • Measured density, mass attenuation coefficient, and effective atomic number using Phy-X/PSD software.
  • For PbF2-based glasses, density decreased from 4.49 to 4.13 g/cm3, MAC from 88.64 to 75.37 cm2/gm, and Zeff from 77.99 to 75.85.
  • For CaF2-based glasses, density decreased from 3.73 to 3.35 g/cm3, MAC from 58.746 to 56.279 cm2/g, and Zeff increased from 66.74 to 67.69.
  • Lead-based glasses offer superior radiation shielding, while calcium-based glasses are shown to have tunable properties.

Abstract

To examine the impact of systematic compositional changes on the radiation shielding capabilities of manganese dioxide (MnO2) doped boro-bismuth glasses-two distinct glass series were synthesized: one with a lead fluoride (PbF2) base and the other with a calcium fluoride (CaF2) base, where the concentration of Al2O3 was progressively increased from 3 to 15 mol% at the expense of the (PbF2) and (CaF2). The non-crystalline structure of the glasses was confirmed by XRD analysis. The density and radiation-shielding parameters, including the mass attenuation coefficient (MAC,μm) and effective atomic number (Zeff), were measured using the Stimulating software Phy-X/PSD. For the PbF2-based series, density decreased from 4.49 to 4.13 g/cm3, MAC dropped from 88.64 cm2/gm to 75.37 cm2/gm, and Zeff decreased from 77.99 to 75.85. For the CaF2-based series, density decreased from 3.73 to 3.35 g/cm3, MAC: 58.746 to 56.279 cm2/g and Zeff rose from 66.74 to 67.69. Lead-based glasses provide the best radiation shielding, according to the data, whereas calcium-based glasses have tunable characteristics and are safer and more environmentally friendly. These materials can be used in medical imaging, radiotherapy facilities, nuclear power plants, aerospace applications, and portable radiation protection since adding Al2O3 greatly increases their strength and radiation shielding capacity.

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Cite This Study

Maalegoundla et al. (2026) studied this question.

synapsesocial.com/papers/69abc1a65af8044f7a4ea8c4https://doi.org/10.1051/epjconf/202635601033/pdf
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