Solid-gas interactions at electrode surfaces determine the efficiency of solid-oxide fuel cells and electrolyzers. Here, the correlation between surface-gas kinetics and the crystal orientation of perovskite electrodes is studied in the model system La0.8 Sr0.2 Co0.2 Fe0.8 O3 . The gas-exchange kinetics are characterized by synthesizing epitaxial half-cell geometries where three single-variant surfaces are produced [i.e., La0.8 Sr0.2 Co0.2 Fe0.8 O3 /La0.9 Sr0.1 Ga0.95 Mg0.05 O3-δ /SrRuO3 /SrTiO3 (001), (110), and (111)]. Electrochemical impedance spectroscopy and electrical conductivity relaxation measurements reveal a strong surface-orientation dependency of the gas-exchange kinetics, wherein (111)-oriented surfaces exhibit an activity >...
Perovskite oxide surfaces catalyze oxygen exchange reactions that are crucial for fuel cells, electr...
Cobalt-containing perovskite oxides are promising electrocatalysts for the oxygen evolution reaction...
stabilized zirconia electrolyte was studied at 600-800°C. The study of the exchange current, Io, as ...
Solid-gas interactions at electrode surfaces determine the efficiency of solid-oxide fuel cells and ...
Solid–gas interactions at electrode surfaces determine the efficiency of solid-oxide fuel cells and ...
The perovskite SrTiO3 is arguably one of the most important oxide systems in condensed matter resear...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
Attaining fast oxygen exchange kinetics on perovskite and related mixed ionic and electronic conduct...
Mixed conducting perovskite oxides and related structures serving as electrodes for electrochemical ...
The oxygen exchange activity of mixed conducting oxide surfaces has been widely investigated, but a ...
While SOFC perovskite oxide cathodes have been the subject of numerous studies, the critical factors...
Surface cation segregation, strontium (Sr) in particular, has been considered as one of crucial barr...
Cobalt-containing perovskite oxides are promising electrocatalysts for the oxygen evolution reaction...
Transition metal perovskite oxides are promising electrocatalysts for the oxygen reduction reaction ...
Transition metal perovskite oxides are promising electrocatalysts for the oxygen reduction reaction ...
Perovskite oxide surfaces catalyze oxygen exchange reactions that are crucial for fuel cells, electr...
Cobalt-containing perovskite oxides are promising electrocatalysts for the oxygen evolution reaction...
stabilized zirconia electrolyte was studied at 600-800°C. The study of the exchange current, Io, as ...
Solid-gas interactions at electrode surfaces determine the efficiency of solid-oxide fuel cells and ...
Solid–gas interactions at electrode surfaces determine the efficiency of solid-oxide fuel cells and ...
The perovskite SrTiO3 is arguably one of the most important oxide systems in condensed matter resear...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
Attaining fast oxygen exchange kinetics on perovskite and related mixed ionic and electronic conduct...
Mixed conducting perovskite oxides and related structures serving as electrodes for electrochemical ...
The oxygen exchange activity of mixed conducting oxide surfaces has been widely investigated, but a ...
While SOFC perovskite oxide cathodes have been the subject of numerous studies, the critical factors...
Surface cation segregation, strontium (Sr) in particular, has been considered as one of crucial barr...
Cobalt-containing perovskite oxides are promising electrocatalysts for the oxygen evolution reaction...
Transition metal perovskite oxides are promising electrocatalysts for the oxygen reduction reaction ...
Transition metal perovskite oxides are promising electrocatalysts for the oxygen reduction reaction ...
Perovskite oxide surfaces catalyze oxygen exchange reactions that are crucial for fuel cells, electr...
Cobalt-containing perovskite oxides are promising electrocatalysts for the oxygen evolution reaction...
stabilized zirconia electrolyte was studied at 600-800°C. The study of the exchange current, Io, as ...