论文标题
对永久磁铁的全3D螺旋素合金的探索:基于AB的高通量研究
Exploration of all-3d Heusler alloys for permanent magnets: an ab initio based high-throughput study
论文作者
论文摘要
Heusler合金吸引了对功能材料各个领域的兴趣,因为它们的性质很容易通过组成来调节。在这里,我们研究了相对较新的All 3D Heusler合金,鉴于其作为永久磁铁的潜力。为了确定合适的候选人,我们使用电子结构数据库进行了一项高通量研究,以搜索具有四方对称性和高磁化的X $ _2 $ yz型素type系统。对于通过我们选择过滤器的合金,我们使用了密度功能理论计算和自旋动力学建模的组合来研究其磁性特性,包括磁晶的各向异性能量和交换相互作用。符合所有搜索标准的候选人是研究磁化磁化强度和库里温度的测定温度依赖性的输入。根据我们的结果,我们建议Fe $ _2 $ nizn,fe $ _2 $ niti和ni $ _2 $ cofe是潜在的候选候选者,这些磁铁具有较大的平面磁性各向异性(1.23、0.97和0.97和0.82 MJ/M $^3 $),并且高于200 k的较高的温度。我们进一步表明,各向异性的大小和方向通过计算几个四方相各向异性能的值非常敏感。因此,菌株的应用可用于调整这些化合物中的各向异性。
Heusler alloys have attracted interest in various fields of functional materials since their properties can quite easily be tuned by composition. Here, we have investigated the relatively new class of all-3d Heusler alloys in view of its potential as permanent magnets. To identify suitable candidates, we performed a high-throughput study using an electronic structure database to search for X$_2$YZ-type Heusler systems with tetragonal symmetry and high magnetization. For the alloys which passed our selection filters, we have used a combination of density functional theory calculations and spin dynamics modelling to investigate their magnetic properties including the magnetocrystalline anisotropy energy and exchange interactions. The candidates which fulfilled all the search criteria served as input for the investigation of the temperature dependence of the magnetization and determination of Curie temperature. Based on our results, we suggest that Fe$_2$NiZn, Fe$_2$NiTi and Ni$_2$CoFe are potential candidates for permanent magnets with large out-of-plane magnetic anisotropy (1.23, 0.97 and 0.82 MJ/m$^3$ respectively) and high Curie temperatures lying more than 200 K above the room temperature. We further show that the magnitude and direction of anisotropy is very sensitive to the strain by calculating the values of anisotropy energy for several tetragonal phases. Thus, application of strain can be used to tune the anisotropy in these compounds.