Reversible solid oxide cells have received increasing attention due to high efficiency. Cobalt-free perovskite electrode has compatible thermal expansion coefficient matching with the electrolyte and the reversible operation to inhibit the segregation of Sr. Herein a novel cobalt-free La0.6Sr0.4Fe0.8Ni0.2O3−δ perovskite is developed and investigated as oxygen electrode for reversible solid oxide cells. The electrochemical performance of La0.6Sr0.4Fe0.8Ni0.2O3−δ oxygen electrode in fuel cell mode and electrolysis mode is investigated in detail. The maximum power density of 961 mW cm–2 and polarization resistance of 0.142 Ω cm2 at 800 °C can be achieved in fuel cell mode. While the cell is operated in electrolysis mode, the current density ra...
Symmetrical solid oxide cells (SSOCs) have been extensively recognized due to their simple cell conf...
Changing the type and content of cation doping in perovskite oxide can improve its electrocatalytic ...
A key need in the development of solid oxide cells (SOCs) is for electrodes that promote fast oxygen...
Active and stable oxygen electrode is probably the most important in the development of solid oxide ...
Reversing the direction of polarization current is essential for reversible solid oxide cells techno...
Reversing the direction of polarization current is essential for reversible solid oxide cells techno...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
Symmetrical solid oxide cells (SSOCs) have been extensively recognized due to their simple cell conf...
Long-term degradation remains the main issue for the viability of solid oxide electrolysis cell (SOE...
Symmetrical solid oxide cells (SSOCs) have been extensively recognized due to their simple cell conf...
Changing the type and content of cation doping in perovskite oxide can improve its electrocatalytic ...
A key need in the development of solid oxide cells (SOCs) is for electrodes that promote fast oxygen...
Active and stable oxygen electrode is probably the most important in the development of solid oxide ...
Reversing the direction of polarization current is essential for reversible solid oxide cells techno...
Reversing the direction of polarization current is essential for reversible solid oxide cells techno...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
International audienceImproving the oxygen electrode performances of the single solid oxide electrol...
Symmetrical solid oxide cells (SSOCs) have been extensively recognized due to their simple cell conf...
Long-term degradation remains the main issue for the viability of solid oxide electrolysis cell (SOE...
Symmetrical solid oxide cells (SSOCs) have been extensively recognized due to their simple cell conf...
Changing the type and content of cation doping in perovskite oxide can improve its electrocatalytic ...
A key need in the development of solid oxide cells (SOCs) is for electrodes that promote fast oxygen...