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Solid-Phase Equilibrium Diagram of the Bi2Te3-Rich Corner of MnTe–Bi2Te3–Te System and Thermodynamic Properties of the Intermediate Phases

  • Elnur N. Orujlu,
  • Eldar I. Ahmadov,
  • Najaf N. Orujov,
  • Mahammad B. Babanly

摘要

Abstract

In this study, the thermodynamic properties of the Bi2Te3-rich manganese-bismuth tellurides were determined using an electromotive force (EMF) method with a liquid electrolyte in a 300–450 K temperature interval. Solid-phase equilibrium diagram of the Bi2Te3-rich corner of the MnTe–Bi2Te3–Te system at 300 K was constructed using literature data and X-ray diffraction (XRD) analysis of synthesized electrode alloys. Functions \(\Delta \bar {Z}_{{{\text{Mn}}}}^{'}\) ( \(\Delta \bar {G}_{{{\text{Mn}}}}^{'},\) \(\Delta \bar {H}_{{{\text{Mn}}}}^{'}\) , and \(\Delta \bar {S}_{{{\text{Mn}}}}^{'}\) ) corresponding to linear equations were calculated for different phase regions using EMF values. The relative partial molar functions of manganese in alloys were calculated with the help of these data along with the corresponding thermodynamic functions of MnTe and Bi2Te3. The standard thermodynamic functions of formation and standard entropies of the Bi2Te3-rich manganese bismuth tellurides – MnBi8Te13, MnBi10Te16, MnBi12Te19, and MnBi14Te22 compounds, and solid solutions based on Bi2Te3 have been obtained.