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Phase Equilibria in the System Al2O3-CaO-CoO and Gibbs Energy of Formation of Ca3CoAl4O10
Authors:K. T. Jacob  Chander Shekhar  G. M. Kale
Affiliation:(1) Department of Materials Engineering, Indian Institute of Science, Bangalore, 560012, India;(2) Institute for Materials Research, University of Leeds, Leeds, LS2 9JT, UK
Abstract:An isothermal section of the system Al2O3-CaO-CoO at 1500 K has been established by equilibrating 22 samples of different compositions at high temperature and phase identification by optical and scanning electron microscopy, X-ray diffraction, and energy dispersive spectroscopy after quenching to room temperature. Only one quaternary oxide, Ca3CoAl4O10, was identified inside the ternary triangle. Based on the phase relations, a solid-state electrochemical cell was designed to measure the Gibbs energy of formation of Ca3CoAl4O10 in the temperature range from 1150 to 1500 K. Calcia-stabilized zirconia was used as the solid electrolyte and a mixture of Co + CoO as the reference electrode. The cell can be represented as: $$ ( - ){text{Pt}},{text{CaAl}}_{ 2} {text{O}}_{ 4} + {text{Ca}}_{ 1 2} {text{Al}}_{ 1 4} {text{O}}_{ 3 3} + {text{Ca}}_{ 3} {text{CoAl}}_{ 4} {text{O}}_{ 10} + {text{Co//(CaO)ZrO}}_{ 2}  {text{//}} {text{CoO}} + {text{Co}},{text{ Pt }}( + ). $$ From the emf of the cell, the standard Gibbs energy change for the Ca3CoAl4O10 formation reaction, CoO + 3/5CaAl2O4 + 1/5Ca12Al14O33 → Ca3CoAl4O10, is obtained as a function of temperature: $$ Updelta G_{r}^{text{o}} $$/J mol−1 (±50) = −2673 + 0.289 (T/K). The standard Gibbs energy of formation of Ca3CoAl4O10 from its component binary oxides, Al2O3, CaO, and CoO is derived as a function of temperature. The standard entropy and enthalpy of formation of Ca3CoAl4O10 at 298.15 K are evaluated. Chemical potential diagrams for the system Al2O3-CaO-CoO at 1500 K are presented based on the results of this study and auxiliary information from the literature.
Keywords:chemical potential  electromotive force (emf)  enthalpy of formation  entropy  experimental thermodynamics  Gibbs energy  ternary phase diagram
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