The standard Gibbs energy change accompanying the conversion of rare earth oxides to oxysulfides by reaction of rare earth oxides with diatomic sulfur gas has been measured in the temperature range 870 to 1300 K using the solid state cell: Pt/Cu+Cu2S/R2O2S+R2O3‖(CaO)ZrO2‖Ni+NiO, Pt where R=La, Nd, Sm, Gd, Tb, and Dy. The partial pressure of diatomic sulfur over a mixture of rare earth oxide (R2O3) and oxysulfide (R2O2S) is fixed by the dissociation of Cu2S to Cu in a closed system. The buffer mixture of Cu+Cu2S is physically separated from the rare earth oxide and oxysulfide to avoid complications arising from interaction between them. The corresponding equilibrium oxygen partial pressure is measured with an oxide solid electrolyte cell. ...
Using a solid-state electrochemical technique, thermodynamic properties of three sulfide phases (RhS...
Using a solid-state electrochemical technique, thermodynamic properties of three sulfide phases (RhS...
The emf of the galvanic cell, Pt, Ni + NiO/(CaO) ZrO2/MS + MSO4, Ir, Pt, where M is calcium, stronti...
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 ...
The equilibrium oxygen potentials corresponding to the oxidation of rare earth oxysulfides to their ...
The equilibrium oxygen potentials corresponding to the oxidation of rare earth oxysulfides to their ...
The equilibrium oxygen potentials corresponding to the oxidation of rare earth oxysulfides to their ...
An e.m.f. technique was used for the measurement of the Gibbs' energy changes involved in the conver...
An e.m.f. technique was used for the measurement of the Gibbs' energy changes involved in the conver...
An e.m.f. technique is used for the measurement of the Gibbs' energy changes involved in the convers...
Standard Gibbs energies of formation of oxysulfides of cerium and yttrium from their respective oxed...
Standard Gibbs energies of formation of oxysulfides of cerium and yttrium from their respective oxed...
Standard Gibbs energies of formation of oxysulfides of cerium and yttrium from their respective oxed...
Standard Gibbs energies of formation of oxysulfides of cerium and yttrium from their respective oxed...
Using a solid-state electrochemical technique, thermodynamic properties of three sulfide phases (RhS...
Using a solid-state electrochemical technique, thermodynamic properties of three sulfide phases (RhS...
The emf of the galvanic cell, Pt, Ni + NiO/(CaO) ZrO2/MS + MSO4, Ir, Pt, where M is calcium, stronti...
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 ...
The equilibrium oxygen potentials corresponding to the oxidation of rare earth oxysulfides to their ...
The equilibrium oxygen potentials corresponding to the oxidation of rare earth oxysulfides to their ...
The equilibrium oxygen potentials corresponding to the oxidation of rare earth oxysulfides to their ...
An e.m.f. technique was used for the measurement of the Gibbs' energy changes involved in the conver...
An e.m.f. technique was used for the measurement of the Gibbs' energy changes involved in the conver...
An e.m.f. technique is used for the measurement of the Gibbs' energy changes involved in the convers...
Standard Gibbs energies of formation of oxysulfides of cerium and yttrium from their respective oxed...
Standard Gibbs energies of formation of oxysulfides of cerium and yttrium from their respective oxed...
Standard Gibbs energies of formation of oxysulfides of cerium and yttrium from their respective oxed...
Standard Gibbs energies of formation of oxysulfides of cerium and yttrium from their respective oxed...
Using a solid-state electrochemical technique, thermodynamic properties of three sulfide phases (RhS...
Using a solid-state electrochemical technique, thermodynamic properties of three sulfide phases (RhS...
The emf of the galvanic cell, Pt, Ni + NiO/(CaO) ZrO2/MS + MSO4, Ir, Pt, where M is calcium, stronti...