The standard Gibbs energy of formation of ReO2 in the temperature range from 900 to 1200 K has been determined with high precision using a novel apparatus incorporating a buffer electrode between reference and working electrodes. The role of the buffer electrode was to absorb the electrochemical flux of oxygen through the solid electrolyte from the electrode with higher oxygen chemical potential to the electrode with lower oxygen potential. It prevented the polarization of the measuring electrode and ensured accurate data. The Re+ReO2 working electrode was placed in a closed stabilized-zirconia crucible to prevent continuous vaporization of Re2O7 at high temperatures. The standard Gibbs energy of the formation of ReO2 can be represented by ...
The standard Gibbs energy change accompanying the conversion of rare earth oxides to oxysulfides by...
Metallic Ru has been found to coexist separately with SrO, $RuO_2$ and the interoxide phases, $Sr_2R...
Metallic Ru has been found to coexist separately with SrO, $RuO_2$ and the interoxide phases, $Sr_2R...
The standard Gibbs energy of formation of ReO2 in the temperature range from 900 to 1200 K has been ...
The standard Gibbs energy of formation of $ReO_2$ in the temperature range from 900 to 1200 K has be...
The standard Gibbs energies of formation of RuO2 and OsO2 at high temperature have been determined w...
The standard Gibbs energies of formation of RuO2 and OsO2 at high temperature have been determined w...
The standard Gibbs energies of formation of RuO<sub>2</sub> and OsO<sub>2</sub> at high temperature ...
A solid-state electrochemical cell, with yttria-stabilized zirconia as the electrolyte and pure O-2 ...
A solid-state electrochemical cell, with yttria-stabilized zirconia as the electrolyte and pure O-2 ...
Metallic Ru has been found to coexist separately with SrO, RuO<sub>2</sub> and the interoxide phases...
Metallic Ru has been found to coexist separately with SrO, RuO2 and the interoxide phases, Sr2RuO4, ...
A new design for the solid-state cell incorporating a buffer electrode for high-temperature thermody...
A new design for the solid-state cell incorporating a buffer electrode for high-temperature thermody...
The standard Gibbs energy change accompanying the conversion of rare earth oxides to oxysulfides by...
The standard Gibbs energy change accompanying the conversion of rare earth oxides to oxysulfides by...
Metallic Ru has been found to coexist separately with SrO, $RuO_2$ and the interoxide phases, $Sr_2R...
Metallic Ru has been found to coexist separately with SrO, $RuO_2$ and the interoxide phases, $Sr_2R...
The standard Gibbs energy of formation of ReO2 in the temperature range from 900 to 1200 K has been ...
The standard Gibbs energy of formation of $ReO_2$ in the temperature range from 900 to 1200 K has be...
The standard Gibbs energies of formation of RuO2 and OsO2 at high temperature have been determined w...
The standard Gibbs energies of formation of RuO2 and OsO2 at high temperature have been determined w...
The standard Gibbs energies of formation of RuO<sub>2</sub> and OsO<sub>2</sub> at high temperature ...
A solid-state electrochemical cell, with yttria-stabilized zirconia as the electrolyte and pure O-2 ...
A solid-state electrochemical cell, with yttria-stabilized zirconia as the electrolyte and pure O-2 ...
Metallic Ru has been found to coexist separately with SrO, RuO<sub>2</sub> and the interoxide phases...
Metallic Ru has been found to coexist separately with SrO, RuO2 and the interoxide phases, Sr2RuO4, ...
A new design for the solid-state cell incorporating a buffer electrode for high-temperature thermody...
A new design for the solid-state cell incorporating a buffer electrode for high-temperature thermody...
The standard Gibbs energy change accompanying the conversion of rare earth oxides to oxysulfides by...
The standard Gibbs energy change accompanying the conversion of rare earth oxides to oxysulfides by...
Metallic Ru has been found to coexist separately with SrO, $RuO_2$ and the interoxide phases, $Sr_2R...
Metallic Ru has been found to coexist separately with SrO, $RuO_2$ and the interoxide phases, $Sr_2R...