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Site preferences for La and Pr in Nd2Fe14B permanent magnet: A first principles study

机译:Nd2Fe14B永磁体中La和Pr的位置偏好:第一个原理研究

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Using the first principles method, we studied the site preference and the magnetic ground state of rare-earth elements La and Pr doped Nd2Fe14B permanent magnet. It was found that the La preferred the f-site doping at low doping ratio (12.5 %) while the g-site was more favorable at high doping (25 %). For the Pr impurity, we observed the opposite behavior because the site preference was switched. In addition, the spin configuration also depended on the impurity type and concentration. An antiferromagnetic (AFM) type spin configuration was found at both lower and higher doping ratios of La. For the Pr impurity, at a lower doping ratio, the AFM spin configuration was still preserved. However, the ferromagnetic spin configuration was more stable at a high doping ratio. Through impurity-substitution energy calculations, we found that the La impurity preferred to enter into the 2:14:1 phase at low doping, but it favored the grain-boundary phase at high (25 %) doping ratio. On the other hand, we observed that the Pr always preferred the main phase for both low and high doping concentrations.
机译:使用第一原理方法,我们研究了稀土元素La和Pr掺杂的Nd2Fe14B永磁体的位置偏爱和磁性基态。发现在低掺杂率(12.5%)下La优选f-位掺杂,而在高掺杂(25%)下g-位更有利。对于Pr杂质,我们观察到相反的行为,因为切换了位点偏好。另外,自旋结构还取决于杂质类型和浓度。在较低和较高的La掺杂率下都发现了反铁磁(AFM)型自旋构型。对于Pr杂质,在较低的掺杂率下仍保留了AFM自旋构型。然而,铁磁自旋构型在高掺杂率下更稳定。通过杂质替代能的计算,我们发现La杂质在低掺杂时更倾向于进入2:14:1相,但在高掺杂率(25%)时却倾向于晶界相。另一方面,我们观察到对于低和高掺杂浓度而言,Pr总是首选主相。

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