作者
Michael Duerrschnabel, Min Yi, Kaan Üstüner, M Liesegang, Matthias Katter, H-J Kleebe, B Xu, Oliver Gutfleisch, Leopoldo Molina-Luna
发表日期
2017/7/4
期刊
Nature communications
卷号
8
期号
1
页码范围
54
出版商
Nature Publishing Group UK
简介
A higher saturation magnetization obtained by an increased iron content is essential for yielding larger energy products in rare-earth Sm2Co17-type pinning-controlled permanent magnets. These are of importance for high-temperature industrial applications due to their intrinsic corrosion resistance and temperature stability. Here we present model magnets with an increased iron content based on a unique nanostructure and -chemical modification route using Fe, Cu, and Zr as dopants. The iron content controls the formation of a diamond-shaped cellular structure that dominates the density and strength of the domain wall pinning sites and thus the coercivity. Using ultra-high-resolution experimental and theoretical methods, we revealed the atomic structure of the single phases present and established a direct correlation to the macroscopic magnetic properties. With further development, this knowledge can be …
引用总数
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