Prediction of NdFe16-based permanent-magnet compounds with high magnetization

Insung Seo, Shimpei Tanaka, Mitsuru Endo, Y. Gohda
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Abstract

We find a candidate for new permanent-magnet materials with the 1-16 stoichiometry on the basis of first-principles calculations utilizing a materials database. An extremely iron-rich NdFe16 compound shows exceptionally high saturation magnetization with an adequate magnetocrystalline anisotropy energy and Curie temperature. Although it has an excessive formation energy in its binary composition, introducing interstitial light elements into NdFe16 successfully decreases the formation energy while maintaining its superior magnetic properties. The density of states explains the alteration of magnetization from incorporating light elements.
预测具有高磁化率的 NdFe16 基永磁化合物
在利用材料数据库进行第一性原理计算的基础上,我们找到了具有 1-16 化学计量的新型永磁材料的候选材料。一种含铁量极高的 NdFe16 化合物显示出极高的饱和磁化率,并具有足够的磁晶各向异性能和居里温度。虽然钕铁硼在二元成分中具有过高的形成能,但在钕铁硼中引入间隙轻元素后,成功地降低了形成能,同时保持了其卓越的磁性能。状态密度解释了加入轻元素后磁化的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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