Spin-driven ordering of Cr in the equiatomic high entropy alloy NiFeCrCo

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Abstract

Spin-driven ordering of Cr in an equiatomic fcc NiFeCrCo high entropy alloy (HEA) was predicted by first-principles calculations. Ordering of Cr is driven by the reduction in energy realized by surrounding anti-ferromagnetic Cr with ferromagnetic Ni, Fe, and Co in an alloyed L1 2 structure. The fully Cr-ordered alloyed L1 2 phase was predicted to have a magnetic moment that is 36% of that for the magnetically frustrated random solid solution. Three samples were synthesized by milling or casting/annealing. The cast/annealed sample was found to have a low temperature magnetic moment that is 44% of the moment in the milled sample, which is consistent with theoretical predictions for ordering. Scanning transmission electron microscopy measurements were performed and the presence of ordered nano-domains in cast/annealed samples throughout the equiatomic NiFeCrCo HEA was identified.

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Niu, C., Zaddach, A. J., Oni, A. A., Sang, X., Hurt, J. W., Lebeau, J. M., … Irving, D. L. (2015). Spin-driven ordering of Cr in the equiatomic high entropy alloy NiFeCrCo. Applied Physics Letters, 106(16). https://doi.org/10.1063/1.4918996

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