The standard Gibbs energies of formation of SrIrO3, Sr2IrO4 and Sr4IrO6 have been determined in the temperature range from 975 to 1400 K using solid-state cells with (Y2O3) ZrO2 as the electrolyte and pure oxygen gas at a pressure of 0.1 MPa as the reference electrode. For the design of appropriate working electrodes, phase relations in the ternary system Sr–Ir–O were investigated at 1350 K. The only stable oxide detected along the binary Ir–O was IrO2. Three ternary oxides, SrIrO3, Sr2IrO4 and Sr4IrO6, compositions of which fall on the join SrO–IrO2, were found to be stable. Each of the oxides coexisted with pure metal Ir. Therefore, three working electrodes were prepared consisting of mixtures of Ir+SrO+Sr4IrO6, Ir+Sr4IrO6+Sr2IrO4, and Ir...
The isothermal section of the phase diagram for the system Sr-Pb-O at 1100 K is established by equil...
An advanced design of the solid-state cell incorporating a buffer electrode has been developed for h...
Metallic Ru has been found to coexist separately with SrO, $RuO_2$ and the interoxide phases, $Sr_2R...
The standard Gibbs energies of formation of SrIrO3, Sr2IrO4 and Sr4IrO6 have been determined in the ...
The standard Gibbs energies of formation of SrIrO3, Sr2IrO4 and Sr4IrO6 have been determined in the ...
The standard Gibbs energies of formation of SrIrO3, Sr2IrO4 and Sr4IrO6 have been determined in the ...
A new design for the solid-state cell incorporating a buffer electrode for high-temperature thermody...
The standard Gibbs energies of formation of IrO2, CaIrO3, Ca2IrO4 and Ca4IrO6 have been ...
A new design for the solid-state cell incorporating a buffer electrode for high-temperature thermody...
Metallic Ru has been found to coexist separately with SrO, RuO2 and the interoxide phases, Sr2RuO4, ...
Metallic Ru has been found to coexist separately with SrO, RuO<sub>2</sub> and the interoxide phases...
The phase relations involving various oxides in the system Sr-Cr-O at 1250 K have been determined by...
The phase relations involving various oxides in the system Sr-Cr-O at 1250 K have been determined by...
Phase equilibrium and electrochemical studies of the ternary system Bi-Sr-O indicate the presence of...
The isothermal section of the phase diagram for the system Sr-Pb-O at 1100 K is established by equil...
The isothermal section of the phase diagram for the system Sr-Pb-O at 1100 K is established by equil...
An advanced design of the solid-state cell incorporating a buffer electrode has been developed for h...
Metallic Ru has been found to coexist separately with SrO, $RuO_2$ and the interoxide phases, $Sr_2R...
The standard Gibbs energies of formation of SrIrO3, Sr2IrO4 and Sr4IrO6 have been determined in the ...
The standard Gibbs energies of formation of SrIrO3, Sr2IrO4 and Sr4IrO6 have been determined in the ...
The standard Gibbs energies of formation of SrIrO3, Sr2IrO4 and Sr4IrO6 have been determined in the ...
A new design for the solid-state cell incorporating a buffer electrode for high-temperature thermody...
The standard Gibbs energies of formation of IrO2, CaIrO3, Ca2IrO4 and Ca4IrO6 have been ...
A new design for the solid-state cell incorporating a buffer electrode for high-temperature thermody...
Metallic Ru has been found to coexist separately with SrO, RuO2 and the interoxide phases, Sr2RuO4, ...
Metallic Ru has been found to coexist separately with SrO, RuO<sub>2</sub> and the interoxide phases...
The phase relations involving various oxides in the system Sr-Cr-O at 1250 K have been determined by...
The phase relations involving various oxides in the system Sr-Cr-O at 1250 K have been determined by...
Phase equilibrium and electrochemical studies of the ternary system Bi-Sr-O indicate the presence of...
The isothermal section of the phase diagram for the system Sr-Pb-O at 1100 K is established by equil...
The isothermal section of the phase diagram for the system Sr-Pb-O at 1100 K is established by equil...
An advanced design of the solid-state cell incorporating a buffer electrode has been developed for h...
Metallic Ru has been found to coexist separately with SrO, $RuO_2$ and the interoxide phases, $Sr_2R...