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ANALYZING BaSrTiO3 GAS SENSOR PROPERTIES UNDER NO2 EXPOSURE: THE IMPACT OF IMPEDANCE SPECTROSCOPY

  • Bartłomiej Szafraniak
  • , Łukasz Fuśnik
  • , Jie Xu
  • , Feng Gao
  • , Andrzej Brudnik
  • , Sabina Drewniak
  • , Erwin Maciak
  • , Łukasz Błajszczak
  • , Artur Rydosz
  • AGH University of Krakow
  • Northwestern Polytechnical University Xian
  • Silesian University of Technology

Wyniki badań: Wkład do czasopismaArtykułrecenzja

2 Cytowania z bazy Scopus

Abstrakt

Impedance spectroscopy is an appropriate technique for studying the complexity of materials, in which their different frequency relationships can be exploited in such a manner that they can be efficiently separated. Barium strontium titanate BaSrTiO3 (BST) is a ferroelectric material with unique properties that make it useful in a range of electronic applications. BST plays an important role in the field of gas-sensing applications. The potential application of BST material as a gas sensor for detecting nitrogen dioxide (NO2) in the atmosphere was studied. Impedance spectroscopy studies were conducted across a wide frequency range from 10−1 to 106 Hz, in the temperature range of 100C to 350C and a relative humidity of 50%, and both in air and the presence of NO2 in concentrations from 0.5 to 5 ppm. The results of the impedance analysis indicate that the broadband models, which comprise both single and parallel RC elements, can accurately represent the NO2 gas interaction mechanism with the gas-sensitive layer of the BST material. These models were found to effectively capture changes in parameters associated with the interaction.

Język oryginałuangielski
Strony (od–do)1-19
Liczba stron19
CzasopismoMetrology and Measurement Systems
Tom32
Numer wydania1
Identyfikatory DOI
Status publikacjiOpublikowano - 2025

Obszary tematyczne ASJC Scopus

  • Inżynieria sterowania i systemów
  • Instrumentacja

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