The advantages of lowering the operation temperature of SOFCs have attracted great interest worldwide. One of the major barriers to decreasing the operation temperature is the ohmic loss of the electrolyte. Maximizing the electrolyte ionic conductivity is of significant importance, especially in the absence of new electrolyte materials. The ionic conductivity of electrolytes can be influenced by many parameters. There has been an enormous effort in the literature for the improvement of the electrolyte ionic conductivity. From a practical point of view, this paper reviews various approaches to enhancing the ionic conductivity of polycrystalline zirconia- and ceria-based oxide electrolytes in the light of composition, microstructure, and proc...
Increasing the conductivity of electrolytes in lower temperature Solid Oxide Fuel Cells (SOFC) is of...
Electrical conductivity versus dopant ionic radius studies in zirconia- and ceria-based, solid oxide...
Solid oxide fuel cells are currently constructed using a yttria stabilised zirconia electrolyte memb...
The development of electrolyte materials for the high temperature (800-1000 ∘C) solid oxide fuel cel...
SOFC solid electrolytes are known for their ionic conductivity characteristics, which increase with ...
SOFC solid electrolytes are known for their ionic conductivity characteristics, which increase with ...
Lowering the operating temperature of the high-temperature, solid oxide fuel cell (SOFC) improves bo...
Solid oxide fuel cells (SOFCs) operating at low temperature (~500 °C) enable new fields of applicati...
Over the past one decade, several cell component materials and their combinations have been attempte...
Solid oxide fuel cell (SOFC) cathodes were prepared by infiltration of 35 wt % La0.8Sr0.2FeO3 (LSF) ...
The electrolyte supported cells satisfy the requirements for the application in the solid oxide fuel...
Depletion of fossil fuel at an alarming rate is a major concern of humankind. Consequently,researche...
Yttria-stabilized zirconia (YSZ) is a highly promising electrolyte material for solid oxide fuel cel...
Solid oxide fuel cells (SOFCs) are the future of energy production in America. They offer great prom...
The system Y2O3-Sc2O3-ZrO2 has been extensively studied in the last decade, with the purpose of usin...
Increasing the conductivity of electrolytes in lower temperature Solid Oxide Fuel Cells (SOFC) is of...
Electrical conductivity versus dopant ionic radius studies in zirconia- and ceria-based, solid oxide...
Solid oxide fuel cells are currently constructed using a yttria stabilised zirconia electrolyte memb...
The development of electrolyte materials for the high temperature (800-1000 ∘C) solid oxide fuel cel...
SOFC solid electrolytes are known for their ionic conductivity characteristics, which increase with ...
SOFC solid electrolytes are known for their ionic conductivity characteristics, which increase with ...
Lowering the operating temperature of the high-temperature, solid oxide fuel cell (SOFC) improves bo...
Solid oxide fuel cells (SOFCs) operating at low temperature (~500 °C) enable new fields of applicati...
Over the past one decade, several cell component materials and their combinations have been attempte...
Solid oxide fuel cell (SOFC) cathodes were prepared by infiltration of 35 wt % La0.8Sr0.2FeO3 (LSF) ...
The electrolyte supported cells satisfy the requirements for the application in the solid oxide fuel...
Depletion of fossil fuel at an alarming rate is a major concern of humankind. Consequently,researche...
Yttria-stabilized zirconia (YSZ) is a highly promising electrolyte material for solid oxide fuel cel...
Solid oxide fuel cells (SOFCs) are the future of energy production in America. They offer great prom...
The system Y2O3-Sc2O3-ZrO2 has been extensively studied in the last decade, with the purpose of usin...
Increasing the conductivity of electrolytes in lower temperature Solid Oxide Fuel Cells (SOFC) is of...
Electrical conductivity versus dopant ionic radius studies in zirconia- and ceria-based, solid oxide...
Solid oxide fuel cells are currently constructed using a yttria stabilised zirconia electrolyte memb...