DOE OSTI ยท 3002616
High-performance permanent-magnet materials based on CeFe 12
Abstract
We perform first-principles calculations on the Mo/Zr-alloyed ThMn 12 -structure prototype CeFe 12 to explore its electronic and magnetic properties and potential for permanent magnet applications. A recent experiment has shown that the Mo/Zr-alloyed CeFe 12 phase with the symmetry ๐ผโข4/๐โข๐โข๐ can be stabilized in bulk. It encourages an investigation into the intrinsic magnetic characteristics of the base structure CeFe 12 and the effect of transition metal alloying in it. Our calculations reveal that the base structure prototype CeFe 12 in its tetragonal phase exhibits uniaxial magnetic anisotropy with a magnetic anisotropy energy (๐พ 1 ) โผ 1 MJ/m โ3 and a substantial magnetic moment of โผ 1.8T, showing its promise as a permanent magnet. The introduction of the stabilizing transition metals Zr, Mo, and W reduces these values but still keeps the materials very promising. Notably, when 50% of Ce is substituted by Sm in Mo-alloyed CeFe 12 , the ๐พ 1 is significantly enhanced, accompanied by a fairly decent magnetic moment of โผ 1.2T. These findings establish this alloy as a strong candidate for high-performance permanent magnet applications. In conclusion, this study emphasizes the importance of strategic element substitution and site selection in transition metal-alloyed CeFe 12 to achieve both structural stability and remarkable magnetic properties.
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Pokhrel, Nabaraj [Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States). Materials Science & Technology Division] (ORCID:0000000328283076), Samolyuk, German D. [Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States). Materials Science & Technology Division] (ORCID:0000000168778255), Palasyuk, Andriy [Ames Laboratory (AMES), Ames, IA (United States)] (ORCID:0000000337932066), Parker, David S. [Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States). Materials Science & Technology Division] (ORCID:0000000161011334). 2025-07-21. High-performance permanent-magnet materials based on CeFe 12. https://doi.org/10.1103/snv6-rd3c
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