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Data-driven design of a new class of rare-earth free permanent magnets

Materials Science 2025-11-24 v1

Abstract

A new class of rare-earth-free permanent magnets is proposed. The parent compound of this class is Co3_3Mn2_2Ge, and its discovery is the result of first principles theory combined with experimental synthesis and characterisation. The theory is based on a high-throughput/data-mining search among materials listed in the ICSD database. From ab-initio theory of the defect free material it is predicted that the saturation magnetization is 1.71 T, the uniaxial magnetocrystalline anisotropy is 1.44 MJ/m3^3, and the Curie temperature is 700 K. Co3_3Mn2_2Ge samples were then synthesized and characterised with respect to structure and magnetism. The crystal structure was found to be the MgZn2_2-type, with partial disorder of Co and Ge on the crystallographic lattice sites. From magnetization measurements a saturation polarization of 0.86 T at 10 K was detected, together with a uniaxial magnetocrystalline anisotropy constant of 1.18 MJ/m3^3, and the Curie temperature of TCT_{\rm C} = 359 K. These magnetic properties make Co3_3Mn2_2Ge a very promising material as a rare-earth free permanent magnet, and since we can demonstrate that magnetism depends critically on the amount of disorder of the Co and Ge atoms, a further improvement of the magnetism is possible. From the theoretical works, a substitution of Ge by neighboring elements suggest two other promising materials - Co3_3Mn2_2Al and Co3_3Mn2_2Ga. We demonstrate here that the class of compounds based on T3T_3Mn2_2X (T = Co or alloys between Fe and Ni; X=Ge, Al or Ga) in the MgZn2_2 structure type, form a new class of rare-earth free permanent magnets with very promising performance.

Keywords

Cite

@article{arxiv.2101.10773,
  title  = {Data-driven design of a new class of rare-earth free permanent magnets},
  author = {Alena Vishina and Daniel Hedlund and Vitalii Shtender and Erna K. Delczeg-Czirjak and Simon R. Larsen and Olga Yu. Vekilova and Shuo Huang and Levente Vitos and Peter Svedlindh and Martin Sahlberg and Olle Eriksson and Heike C. Herper},
  journal= {arXiv preprint arXiv:2101.10773},
  year   = {2025}
}