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Dual Pore Cathode Materials for Solid Oxide Fuel Cells
by
Górski, M.
, Mosiałek, M.
, Zimowska, M.
, Krzan, M.
, Kharitonov, D.
, Komenda, A.
in
Beads
/ Cathodes
/ Cathodic polarization
/ Cobalt ferrites
/ composite cathode
/ Electrochemical impedance spectroscopy
/ Electrode materials
/ Electrode polarization
/ Electrolytic cells
/ Gaseous diffusion
/ Iron
/ Lanthanum
/ lanthanum strontium cobalt ferrite
/ Lithium
/ Partial pressure
/ Pastes
/ Polystyrene resins
/ solid oxide fuel cell
/ Solid oxide fuel cells
/ Yttrium
/ yttrium iron cobaltite
2020
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Dual Pore Cathode Materials for Solid Oxide Fuel Cells
by
Górski, M.
, Mosiałek, M.
, Zimowska, M.
, Krzan, M.
, Kharitonov, D.
, Komenda, A.
in
Beads
/ Cathodes
/ Cathodic polarization
/ Cobalt ferrites
/ composite cathode
/ Electrochemical impedance spectroscopy
/ Electrode materials
/ Electrode polarization
/ Electrolytic cells
/ Gaseous diffusion
/ Iron
/ Lanthanum
/ lanthanum strontium cobalt ferrite
/ Lithium
/ Partial pressure
/ Pastes
/ Polystyrene resins
/ solid oxide fuel cell
/ Solid oxide fuel cells
/ Yttrium
/ yttrium iron cobaltite
2020
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Do you wish to request the book?
Dual Pore Cathode Materials for Solid Oxide Fuel Cells
by
Górski, M.
, Mosiałek, M.
, Zimowska, M.
, Krzan, M.
, Kharitonov, D.
, Komenda, A.
in
Beads
/ Cathodes
/ Cathodic polarization
/ Cobalt ferrites
/ composite cathode
/ Electrochemical impedance spectroscopy
/ Electrode materials
/ Electrode polarization
/ Electrolytic cells
/ Gaseous diffusion
/ Iron
/ Lanthanum
/ lanthanum strontium cobalt ferrite
/ Lithium
/ Partial pressure
/ Pastes
/ Polystyrene resins
/ solid oxide fuel cell
/ Solid oxide fuel cells
/ Yttrium
/ yttrium iron cobaltite
2020
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Journal Article
Dual Pore Cathode Materials for Solid Oxide Fuel Cells
2020
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Overview
In this work, we developed the lanthanum strontium cobalt ferrite and it’s composite with yttrium iron cobaltite (mass ratio of 1:1) cathodes as a thin layer on Ce0.8Sm0.2O1.9 electrolyte. Two kinds of electrode pastes were prepared, with and without 6 mm polystyrene beads as an additional pore former. The performance of cathode materials was investigated by electrochemical impedance spectroscopy as a function of electrode morphology, oxygen partial pressure, potential, and temperature. The polarization resistance of the more porous electrodes was lower than those electrodes prepared without additional pore former in the whole potential range at 800°C, slightly lower at 700°C and 600°C. The addition of yttrium iron cobaltite decreased the performance of both types of cathodes. The lower polarization resistance of porous cathodes is due to the facilitated gas diffusion through their structure.
Publisher
Polish Academy of Sciences
Subject
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