Thermodynamic models of multicomponent nonstoichiometric solution phases using internal process order parameters

Many multi-component compounds are nonstoichiometric due to the competing energetic and entropic thermodynamic contributions at finite temperatures. In CALPHAD-type thermodynamic descriptions, their chemical potential or molar Gibbs free energy at a given temperature is often expressed as a function of site fractions or occupation probabilities of different atomic/ionic/defect species on different sublattices. However, these site fractions are generally not independent from each other due to internal processes involving atomic exchange reactions, redox reactions, and defect formation. Here, we propose a general, systematic thermodynamic description of nonstoichiometric compounds by introducing a set of order parameters describing the extent of these internal processes. The equilibrium state at a given temperature and an overall chemical composition is then obtained by minimizing the chemical potential of a compound with respect to these order parameters. We demonstrate the mutual relationships between site fractions and order parameters using two types of practically important multicomponent phases as examples: perovskite La1-xSrxMnO3 (LSM) and LaxSr1-xCoyFe1-yO3 (LSCF) used as solid oxide fuel cell cathodes and the spinel Co-Fe-O system as a catalyst for CO oxidation. We demonstrate that this proposed thermodynamic model can be directly incorporated in kinetic modeling, e.g., phase-field simulation, of diffusion-reaction and phase transformation processes involving nonstoichiometric phases as well as the kinetics of the internal processes within the nonstoichiometric compound under non-equilibrium conditions. Thus, a general link can be established between thermodynamic databases in terms of site fractions and phase-field simulations of kinetic processes and microstructure evolution using order parameters. (C) 2021 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

Files

Metadata

Work Title Thermodynamic models of multicomponent nonstoichiometric solution phases using internal process order parameters
Access
Open Access
Creators
  1. Yanzhou Li
  2. Harry W. Abernathy
  3. Long-Qing Chen
Keyword
  1. Sublattice model
  2. Internal processes
  3. Order parameters
  4. Nonstoichiometric compounds
  5. Phase-field simulation
License In Copyright (Rights Reserved)
Work Type Article
Publisher
  1. Acta Materialia
Publication Date 2022
Publisher Identifier (DOI)
  1. https://doi.org/10.1016/j.actamat.2021.117462
Deposited August 11, 2022

Versions

Analytics

Collections

This resource is currently not in any collection.

Work History

Version 1
published

  • Created
  • Updated
  • Added Creator Sandra Elder
  • Added Thermodynamic models of multicomponent nonstoichiometric solution phases using internal process order parameters.pdf
  • Updated License Show Changes
    License
    • https://rightsstatements.org/page/InC/1.0/
  • Published
  • Updated Keyword, Publisher, Publisher Identifier (DOI), and 1 more Show Changes
    Keyword
    • Sublattice model, Internal processes, Order parameters, Nonstoichiometric compounds, Phase-field simulation
    Publisher
    • Acta Materialia
    Publisher Identifier (DOI)
    • https://doi.org/10.1016/j.actamat.2021.117462
    Publication Date
    • 2021-11
    • 2022
  • Deleted Creator Sandra Elder
  • Added Creator Yanzhou Li
  • Added Creator Harry W. Abernathy
  • Added Creator Long-Qing Chen
  • Updated