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Temperature dependent magnetic properties of Dy-doped Fe16N2: Potential rare-earth-lean permanent magnet

机译:Dy-掺杂Fe16N2的温度依赖性磁性:潜在的稀土稀薄永磁体

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Using the full potential linearized augmented plane wave method, we explored the magnetocrystalline anisotropy of Dy impurity doped alpha ''-Fe16N2. Here, we considered two different Dy concentrations (1.56 and 3.125%). We also investigated the temperature dependence of the magnetic properties. The Dy site occupancy was found to be concentration dependent. The magnetic moments of Fe atoms near the Dy impurity was suppressed. However, we found a large magnetic moment in Dy atom (4.85-4.87 mu(B)). Compared with the magnetic anisotropy constant in the pristine alpha ''-Fe16N2 (0.57 MJ/m(3)), we obtained an enhanced perpendicular magnetic anisotropy. The calculated anisotropy constants in 1.56% Dy doping was 0.97 MJ/m(3) while it became 1.27 MJ/m(3) in 3.125% Dy doping. The Curie temperature in the pristine structure was about 820 K and it was suppressed to 765 K and 605 K in 1.56% and 3.125% Dy doping. At room temperature (300 K), the coercive field of 3.125% Dy doped system was enhanced almost 50% compared with that of the pure Fe16N2. We also found a maximum energy product of 50.9 MGOe for 3.125% Dy doping at 300 K. Our finding may suggest that the alpha ''-Fe16N2 can be a potential permanent magnet with a lean Dy doping.
机译:使用全潜在的线性化增强平面波方法,我们探讨了Dy杂质掺杂α''fe16n2的磁镀晶各向异性。在此,我们认为两种不同的Dy浓度(1.56和3.125%)。我们还研究了磁性的温度依赖性。发现Dy位点占用率浓度依赖。抑制了Dy杂质附近的Fe原子的磁矩。然而,我们在Dy原子中发现了一个大的磁矩(4.85-4.87 mu(b))。与原始α'-Fe16N2(0.57mJ / m(3))中的磁各向异性常数相比,我们得到了增强的垂直磁各向异性。计算出的1.56%掺杂中的各向异性常数为0.97mJ / m(3),而在3.125%掺丁中变为1.27mJ / m(3)。原始结构中的居里温度为约820k,抑制在1.56%和3.125%Dy掺杂中的765 k和605k。在室温(300 k)时,与纯Fe16N2相比,3.125%Dy掺杂系统的矫顽电场近50%。我们还发现了50.9MGoe的最高能量产物,适用于300 K的3.125%掺杂。我们的发现可能表明Alpha''Fe16N2可以是具有瘦掺杂的潜在的永磁体。

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