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Gas-sensing performance of SnO2-based chemoresistive sensors after irradiation with alpha particles and gamma-rays

  • G. Zonta,
  • M. Astolfi,
  • N. Cerboni,
  • S. Gherardi,
  • M. Kasprzak,
  • C. Malagù,
  • P. Steinegger,
  • D. Vincenzi,
  • N. M. Chiera

摘要

SnO2-based chemoresistive sensors were tested for the detection of H2O and CO impurities both before and after exposure to α-particles and γ-rays, assessing their radiation resistance for use in moderately radioactive environments. The materials examined were SnO2 with gold nanoparticles, and a mix of Sn-, Ti-, and Nb-oxides. The performance was evaluated in both an open-ended gas-flow setup and in a gas-loop system. Post-irradiation characterization via scanning electron microscopy and energy-dispersive X-ray spectroscopy was performed to assess morphological changes. Preliminary results showed a fast and efficient response of the sensors after irradiation, indicating their suitability for this novel use.