English

Exploring the Complex Landscape of Entropy Stabilized Oxides

Materials Science 2025-08-13 v2 Chemical Physics

Abstract

Entropy-stabilized oxides (ESOs), driven by high configurational entropy, have gained phenomenological research interest due to their potential for tailoring structure property relationships. However, the chemical short range ordering (SRO) and its interplay with local lattice distortion (LD) remain to be explored, although they could diminish the configurational entropy and potentially impact structure property relationships. A combination of experimental and theoretical approaches are employed to investigate the SRO and LD in the prototype ESO, Mg0.2Co0.2Ni0.2Cu0.2Zn0.2O, generally referred to as J14. We demonstrate that the efficiency and accuracy of density functional theory (DFT) relaxed special quasirandom structures (SQS) enhances the analysis of the local structure of J14, unveiling the unique local cationic environments. Importantly, this joint experimental and computational approach sheds light on the understanding of local structure and structure property relationships in J14, demonstrating the necessity for further research into other high entropy and compositionally complex materials.

Cite

@article{arxiv.2507.03804,
  title  = {Exploring the Complex Landscape of Entropy Stabilized Oxides},
  author = {Bo Jiang and De-Ye Lin and Gerald R. Bejger and Stephen C. Purdy and Yuanpeng Zhang and Xin Wang and Jon-Paul Maria and Christina M. Rost and Katharine Page},
  journal= {arXiv preprint arXiv:2507.03804},
  year   = {2025}
}

Comments

27pages,5 figures

R2 v1 2026-07-01T03:47:14.793Z