High conductivity and high density SrCe0.5Zr0.35Y0.1A0.05O3-δ (A = Gd, Sm) proton-conducting electrolytes for IT-SOFCs

A novel Sr-based perovskite electrolyte, SrCe 0.5 Zr 0.35 Y 0.1 Gd 0.05 O 3-δ , was successfully synthesized and characterized in comparison with SrCe 0.5 Zr 0.35 Y 0.1 Sm 0.05 O 3-δ for possible use in proton-conducting solid oxide fuel cells. Indexing and subsequent Rietveld refinement confirm tha...

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Veröffentlicht in:Ionics 2020-03, Vol.26 (3), p.1297-1305
Hauptverfasser: Radenahmad, Nikdalila, Afroze, Shammya, Afif, Ahmed, Azad, Atia T., Shin, Ji-Seop, Park, Jun-Young, Zaini, Juliana Haji, Azad, Abul Kalam
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Sprache:eng
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Zusammenfassung:A novel Sr-based perovskite electrolyte, SrCe 0.5 Zr 0.35 Y 0.1 Gd 0.05 O 3-δ , was successfully synthesized and characterized in comparison with SrCe 0.5 Zr 0.35 Y 0.1 Sm 0.05 O 3-δ for possible use in proton-conducting solid oxide fuel cells. Indexing and subsequent Rietveld refinement confirm that both materials crystallize in the orthorhombic symmetry with Pbnm space group. Scanning electron microscopy images show the highly dense structure with the relative densities of 96% and 97% for Gd and Sm-doped sample, respectively. Electrochemical impedance measurements in wet 5% hydrogen at 700 °C shows that the conductivity of SrCe 0.5 Zr 0.35 Y 0.1 Gd 0.05 O 3-δ and SrCe 0.5 Zr 0.35 Y 0.1 Sm 0.05 O 3-δ were 5.701 ×10 −3 S cm −1 and 5.257 × 10 −3 S cm −1 , respectively. The ionic conductivities of both samples increase in the wet hydrogen compared with that of dry hydrogen atmosphere. This indicates the enhancement of protonic conduction mechanism from introducing water in electrochemical impedance measurement. The proton conduction takes place at a lower temperature than conventional solid oxide fuel cell (SOFC) which makes SrCe 0.5 Zr 0.35 Y 0.1 (Gd/Sm) 0.05 O 3-δ good electrolytes for intermediate-temperature solid oxide fuel cell (IT-SOFC).
ISSN:0947-7047
1862-0760
DOI:10.1007/s11581-019-03278-w