LaSrMnO (LSM) is one of the most commonly used cathodes in Solid Oxide Fuel Cells (SOFC). In spite of the fact that nanostructured cathodes are expected to display improved performance, the high operating temperature (∼ 1000°C) of LSM-based SOFCs hinders their stability. In the present work, we have developed nanostructured cathodes prepared from LSM nanotubes of enhanced performance, allowing its use at lower temperatures (∼ 800°C). We observed that our cathodes have qualitative improvements compared with microstructured materials: firstly, the diffusion in the gas phase is optimized to a negligible level and secondly, evidence of ionic conduction is found, which is extremely rare in LSM cathodes. We propose that this important change in t...
Solid oxide fuel cells (SOFCs) are devices that convert the chemical energy of a fuel directly in...
In this work, we present the combination of two characteristics that are beneficial for solid oxide ...
A nanostructured cathode is fabricated by incorporating a mixed ionic and electronic conducting (MIE...
La0.8Sr0.2MnO3 (LSM) is one of the most commonly used cathodes in Solid Oxide Fuel Cells (SOFC). In ...
LaSrMnO (LSM) is one of the most commonly used cathodes in Solid Oxide Fuel Cells (SOFC). In spite o...
In this work we outline the mechanisms contributing to the oxygen reduction reaction in nanostructur...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
In this work we outline the mechanisms contributing to the oxygen reduction reaction in nanostructur...
Low-temperature operation of solid oxide fuel cells (SOFCs) results in deterioration in electrochemi...
In this work we outline the mechanisms contributing to the oxygen reduction reaction in nanostructur...
We investigated the electrochemical properties of Co?Fe perovskites, which can be used as cathodes f...
Solid oxide fuel cells (SOFCs) are devices that convert the chemical energy of a fuel directly in...
In this work, we present the combination of two characteristics that are beneficial for solid oxide ...
A nanostructured cathode is fabricated by incorporating a mixed ionic and electronic conducting (MIE...
La0.8Sr0.2MnO3 (LSM) is one of the most commonly used cathodes in Solid Oxide Fuel Cells (SOFC). In ...
LaSrMnO (LSM) is one of the most commonly used cathodes in Solid Oxide Fuel Cells (SOFC). In spite o...
In this work we outline the mechanisms contributing to the oxygen reduction reaction in nanostructur...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
Proton-conducting oxides offer a promising electrolyte solution for intermediate temperature solid o...
In this work we outline the mechanisms contributing to the oxygen reduction reaction in nanostructur...
Low-temperature operation of solid oxide fuel cells (SOFCs) results in deterioration in electrochemi...
In this work we outline the mechanisms contributing to the oxygen reduction reaction in nanostructur...
We investigated the electrochemical properties of Co?Fe perovskites, which can be used as cathodes f...
Solid oxide fuel cells (SOFCs) are devices that convert the chemical energy of a fuel directly in...
In this work, we present the combination of two characteristics that are beneficial for solid oxide ...
A nanostructured cathode is fabricated by incorporating a mixed ionic and electronic conducting (MIE...