Abstract The AgFeSe 2 and Ag 2 FePbSe 4 compounds within the phase region Ag 2 Se– PbSe–Se–FeSe 0.96–Ag 2 Se (I) of the Ag–Fe–Pb–Se system were obtained from the melt …
Based on the literature data on the phase formation of the Ag–Te–Br system in the part AgBr– Ag 2 Te–Te (I) and the results of the electromotive force (EMF) measurements of the …
The dependence of EMF (E) of Ag| AgI| glass Ag 2| GeS 3| D galvanic cells on temperature is studied in the range of 555–595 K (Ag, D are electrodes of galvanic cells, D are …
The dependence of EMF E of C| Ag| AgI| glass Ag 2 GeS 3| D| C galvanic cells on temperature is studied in the range of 480–580 K (C are inert (graphite) electrodes; Ag, D …
Equilibrium phase formations below 600 K in the parts Ag2Te–FeTe2–F1. 12Te–Ag2Te and Ag8GeTe6–GeTe–FeTe2–AgFeTe2–Ag8GeTe6 of the Fe–Ag–Ge–Te system were …
The dependence of the EMF (E) of galvanic cells Ag| AgI| Ag 2 GeS 3 glass| D on temperature (where Ag, D denotes the electrodes of an electrochemical cell; D represents …
Triangulation of the Ag–S–Br system in the Ag–S–AgBr section is carried out using the methods of physico-chemical analysis. The temperature dependence of EMF of the …
The temperature dependence of the electromotive force (EMF) of Ag| AgI| glass Ag 2 GeS 3| D galvanic elements (where Ag, D are galvanic element electrodes, D is equilibrium three …
Differential thermal analysis (DTA), X-ray diffraction (XRD), and electromotive force (EMF) are used to triangulate Ag–In–Te–I (Br) systems in the vicinity of compounds AgIn 2 Te 3 I …