In the past few years a novel concept of Solid Oxide Fuel Cells (SOFC) has been developed: the symmetrical Solid Oxide Fuel Cells (SSOFC). In this configuration, the same electrode material is used as anode and cathode. Several state-of-the-art SOFC electrode materials have been tested and optimised to operate in such a novel configuration, as is the case of the lanthanum chromites traditionally used as interconnect materials, lanthanum chromium manganites and strontium titanates generally used as anodes and lanthanum manganites typically used as cathodes. Fuel cell performances of approximately 800 mW cm(-2) and similar to 500 mW cm(-2) under H-2 and CH4 atmospheres have been obtained using some of these materials in symmetric configuratio...
Recently, symmetrical solid oxide electrolysis cells (SSOECs) with the same electrode materials as b...
Symmetrical solid oxide fuel cells (SSOFCs) show many advantageous features as compared with convent...
A K2NiF4-type layer-structured oxide, La0.6Sr1.4MnO4+δ (LSMO4), is tuned into a potential electrode ...
A new concept of solid oxide fuel cell (SOFC), Symmetrical SOFC (SFC), has been investigated. In thi...
Symmetrical solid oxide fuel cells (SOFCs) have attracted increasing attention due to their potentia...
The need for alternatives to fossil fuels has turned the world’s attention to renewable energies, wh...
The perovskite (La0.75Sr0.25) Cr0.5Mn0.5O3 (LSCM) is shown to be an effective, redox-stable electrod...
A new concept of solid oxide fuel cell (SOFC), recently proposed, using simultaneously the same mate...
Advanced symmetric solid oxide fuel cells (SOFCs) with a reducible electrode were proposed. Specific...
Among the up-and-coming technologies, reversible solid oxide cells (r-SOCs) represent a highly effic...
The goal of this project is to improve the efficiency and durability of the current solid oxide elec...
Solid oxide fuel cells (SOFCs) are high temperature energy conversion devices with the advantages of...
A novel perovskite-type La0.8Sr0.2Sc0.2Mn0.8O3 (LSSM) oxide was synthesized and evaluated as the ele...
This study investigates the electrochemical performance of using Strontium Ferromolybdate (Sr2Fe1.5M...
In comparison to various power generating devices/energy conversion systems, solid oxide fuel cell (...
Recently, symmetrical solid oxide electrolysis cells (SSOECs) with the same electrode materials as b...
Symmetrical solid oxide fuel cells (SSOFCs) show many advantageous features as compared with convent...
A K2NiF4-type layer-structured oxide, La0.6Sr1.4MnO4+δ (LSMO4), is tuned into a potential electrode ...
A new concept of solid oxide fuel cell (SOFC), Symmetrical SOFC (SFC), has been investigated. In thi...
Symmetrical solid oxide fuel cells (SOFCs) have attracted increasing attention due to their potentia...
The need for alternatives to fossil fuels has turned the world’s attention to renewable energies, wh...
The perovskite (La0.75Sr0.25) Cr0.5Mn0.5O3 (LSCM) is shown to be an effective, redox-stable electrod...
A new concept of solid oxide fuel cell (SOFC), recently proposed, using simultaneously the same mate...
Advanced symmetric solid oxide fuel cells (SOFCs) with a reducible electrode were proposed. Specific...
Among the up-and-coming technologies, reversible solid oxide cells (r-SOCs) represent a highly effic...
The goal of this project is to improve the efficiency and durability of the current solid oxide elec...
Solid oxide fuel cells (SOFCs) are high temperature energy conversion devices with the advantages of...
A novel perovskite-type La0.8Sr0.2Sc0.2Mn0.8O3 (LSSM) oxide was synthesized and evaluated as the ele...
This study investigates the electrochemical performance of using Strontium Ferromolybdate (Sr2Fe1.5M...
In comparison to various power generating devices/energy conversion systems, solid oxide fuel cell (...
Recently, symmetrical solid oxide electrolysis cells (SSOECs) with the same electrode materials as b...
Symmetrical solid oxide fuel cells (SSOFCs) show many advantageous features as compared with convent...
A K2NiF4-type layer-structured oxide, La0.6Sr1.4MnO4+δ (LSMO4), is tuned into a potential electrode ...