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February 26, 2026Physical Review Materials0 citationsOpen Access

Impact of thermal excitations on the stabilization of the disordered VCoNi alloy

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FKFritz KörmannAFAxel ForslundYIYuji Ikeda

Key Points

  • This research aims to understand the effect of thermal excitations on the phase stability of the VCoNi alloy.
  • Conducted Gibbs energy calculations for disordered and ordered phases
  • Analyzed the entropy contributions from vibrational and electronic excitations
  • Compared findings with experimental thermodynamic data
  • Thermal excitations account for nearly half of the entropy difference between phases
  • Energy difference between ordered and disordered phases reduces by about one-third
  • Gibbs energy calculations align with experimental thermodynamic data

Abstract

The VCoNi alloy is a face-centered cubic medium-entropy alloy with exceptionally high yield strength, serving as a prototypical system for investigating short-range order and phase stability in compositionally complex alloys. However, density functional theory calculations underestimate the stability of the random solid solution by several hundred Kelvin. To resolve this discrepancy, we present accurate Gibbs energy calculations for both the random solid solution and a prototypical L 1 2 ordered phase. Our findings reveal that vibrational and electronic excitations account for nearly half of the entropy difference between the ordered phase and disordered solid solution. These factors reduce the energy difference between the two phases by about one-third and help stabilize the solid solution. Our thermodynamic analysis is validated through direct comparison with experimental thermodynamic data.

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Cite This Study

Körmann et al. (2026) studied this question.

synapsesocial.com/papers/699f95951bc9fecf3dab3930https://doi.org/10.1103/9vbd-xqtn
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