Solid oxide fuel cell can convert fuels rich inH2 into electrical energy directly without pollution by electrochemical reaction with oxygen. The efficiency of energy conversion and durability of performance mainly depend on the oxide ion conducting solid electrolyte activity. The global experience gained all these years in the SOFC development has prompted for a change from the state of the art functional electrolyte material, yttria stabilized zirconia (YSZ) having a conductivity of 0.1 S cm−1 at 1000 ◦C to a new material, which exhibits equivalent conductivity values in the intermediate temperature range (600–700 ◦C). In this work, Y2Zr207 (YZ), an ionic conducting stable pyrochlore based oxide prepared by glycine nitrate combustion ...
Bismuth oxide (Bi2O3)-doped yttria-stabilized zirconia (YSZ) were prepared via the solid state react...
A solid oxide fuel cell (SOFC) is a solid-state energy conversion system that converts chemical ener...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
Solid oxide fuel cell can convert fuels rich in H2 into electrical energy directly without pollution...
Compositions in the pyrochlore system Y2Zr2O7 (YZ) and Y2Zr2−xMnxO7−δ (YZM) (where x = 0.025, 0.05, ...
Solid-oxide fuel cells (SOFCs) are high-efficiency devices that can convert a wide variety of fuels ...
The effect of the addition of Bi_2O_3 on sintering, microstructure, crystal phase transformation, el...
Solid Oxide Fuel Cells are devices that use a series of electrochemical reactions to convert chemica...
The most important component of the solid oxide fuel cell (SOFC) is the dense electrolyte. Besides g...
In this study, the new type solid electrolytes studied that can be an alternative to 8YSZ used in co...
Both high ionic conductivity and mechanical strength are important when considering the potential ap...
The most widely used electrolyte in solid oxide fuel cell (SOFC) devices is 8 mol% yttria-stablished...
Yttrium and indium co-doped barium zirconate is investigated to develop a chemically stable and sint...
The effect of yttria co-doping of scandia zirconia on stabilisation and ionic conductivity has been ...
The oxygen ion conduction of YSZ, which is usually used as electrolyte of SOFC, operates at high tem...
Bismuth oxide (Bi2O3)-doped yttria-stabilized zirconia (YSZ) were prepared via the solid state react...
A solid oxide fuel cell (SOFC) is a solid-state energy conversion system that converts chemical ener...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
Solid oxide fuel cell can convert fuels rich in H2 into electrical energy directly without pollution...
Compositions in the pyrochlore system Y2Zr2O7 (YZ) and Y2Zr2−xMnxO7−δ (YZM) (where x = 0.025, 0.05, ...
Solid-oxide fuel cells (SOFCs) are high-efficiency devices that can convert a wide variety of fuels ...
The effect of the addition of Bi_2O_3 on sintering, microstructure, crystal phase transformation, el...
Solid Oxide Fuel Cells are devices that use a series of electrochemical reactions to convert chemica...
The most important component of the solid oxide fuel cell (SOFC) is the dense electrolyte. Besides g...
In this study, the new type solid electrolytes studied that can be an alternative to 8YSZ used in co...
Both high ionic conductivity and mechanical strength are important when considering the potential ap...
The most widely used electrolyte in solid oxide fuel cell (SOFC) devices is 8 mol% yttria-stablished...
Yttrium and indium co-doped barium zirconate is investigated to develop a chemically stable and sint...
The effect of yttria co-doping of scandia zirconia on stabilisation and ionic conductivity has been ...
The oxygen ion conduction of YSZ, which is usually used as electrolyte of SOFC, operates at high tem...
Bismuth oxide (Bi2O3)-doped yttria-stabilized zirconia (YSZ) were prepared via the solid state react...
A solid oxide fuel cell (SOFC) is a solid-state energy conversion system that converts chemical ener...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...