Oxides in which total electrical conductivity is determined by the partial conductivities of three types of charge carriers i.e. holes/ electrons, oxygen ions, and protons are key components of well-functioning proton ceramic fuel cells. Apart from electrochemical properties also easily modified microstructure is an important feature of the electrodes. In the paper, a group of SrTi1−xFexO3−δ (STF, x = 0.2–0.8) perovskites prepared by solid-state synthesis was studied. The microstructure of ceramics was studied using SEM, and the results showed a significant influence of Fe amount on the grain size and material’s porosity. The electrical transport results show a different conductivity in a dry and humidified atmosphere. The hydration kinetics related to the water incorporation are presented with the transition from single-fold to two-fold behaviour, related to the proton-electron hole interaction observed in measurements. The obtained results strictly show a triple-conductivity of SrTi0.8Fe0.2O3−δ system at a lower temperature range, where the protonic defects are thermodynamically stable.
Authors
- dr inż. Tadeusz Miruszewski link open in new tab ,
- dr inż. Wojciech Skubida link open in new tab ,
- dr inż. Piotr Winiarz link open in new tab ,
- dr inż. Kacper Dzierzgowski link open in new tab ,
- dr hab. inż. Aleksandra Mielewczyk-Gryń link open in new tab ,
- dr inż. Sebastian Wachowski link open in new tab ,
- prof. dr hab. inż. Maria Gazda link open in new tab
Additional information
- DOI
- Digital Object Identifier link open in new tab 10.1149/1945-7111/ac6e8f
- Category
- Publikacja w czasopiśmie
- Type
- artykuły w czasopismach
- Language
- angielski
- Publication year
- 2022