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March 3, 2026Russian Journal of Electrochemistry0 citations

Thermodynamic Properties of a High-Temperature Ag8SiSe6 Modification and Ag8Si1 – xSnxSe6 Solid Solutions Studied by the EMF Method with Solid Electrolyte

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SAS. R. AslanliSIS. Z. ImamaliyevaGAG. M. Ashirov

Key Points

  • Partial thermodynamic functions are calculated based on EMF measurements of solid concentrations with temperatures ranging from 300 to 450 K.
  • Integral thermodynamic functions of formation and entropy provide insights into the properties of high-temperature Ag8SiSe6 modifications and its solid solutions.
  • The EMF method utilized consists of concentration cells that help derive equations for potential-generating reactions in the system analyzed.
  • Calculating the thermodynamic properties can lead to advancements in materials science related to silver-based solid solutions.

Abstract

The thermodynamic properties of a high-temperature (HT) modification of Ag8SiSe6 and solid solutions Ag8Si1 – xSnxSe6 are studied using the EMF method with the solid Ag+-conducting electrolyte Ag4RbI5. Based on the EMF measurements of concentration cells such as (-) Ag (s) | {A{{g}₄}Rb{{I}₅} (s) } | ({Ag{-in alloy}}) (+) \, \, \, \, \, \, \, \, \, (1) the linear equations for the temperature dependence of EMF are obtained in the temperature interval of 300–450 К and the partial thermodynamic functions of silver in alloys are calculated. Based on the data on solid-state equilibria in the system Ag–Si–Sn–Se, the equations for the potential-generating reactions responsible for these partial molar functions are obtained and the integral thermodynamic functions of formation and entropy are calculated for the HT-Ag8SiSe6 and solid solutions with a composition x = 0. 2, 0. 4, 0. 6, and 0. 8.

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Cite This Study

Aslanli et al. (2025) studied this question.

synapsesocial.com/papers/69a75e98c6e9836116a295c8https://doi.org/10.1134/s1023193525700211
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