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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >A Combinatorial Study of Inverse Heusler Alloys by First-Principles Computational Methods
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A Combinatorial Study of Inverse Heusler Alloys by First-Principles Computational Methods

机译:用第一性原理计算方法对逆霍斯勒合金进行组合研究

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In continuation of our recent combinatorial work on 810 X(2)YZ full Heusler alloys, a computational study of the same class of materials but with the inverse (XY)XZ crystal structure has been performed on the basis of first-principles (GGA) total-energy calculations using pseudopotentials and plane waves. The predicted enthalpies of formation evidence 27 phases to be thermochemically stable against the elements and the regular X(2)YZ type. A chemical-bondin study yields an inherent tendency for structural distortion in a majority of these alloys, and we predict the existence of the new tetragonal phase Fe2CuGa (P4(2)cm; a = 5.072 angstrom, c = 7.634 angstrom; c/a approximate to 1.51) with a saturation moment of mu = 4.69 mu(B) per formula unit. Thirteen more likewise new, isotypical phases are predicted to show essentially the same behavior. Six phases turn out to be the most stable in the inverse tetragonal arrangement. The course of the magnetic properties as a function of the valence-electron concentration is analyzed using a Slater-Pauling approach.
机译:在我们最近对810 X(2)YZ全Heusler合金的组合工作的基础上,已经基于第一原理(GGA)进行了相同类型材料的计算研究,但具有逆(XY)XZ晶体结构。使用伪势和平面波的总能量计算。预测的形成焓表明27相对元素和常规X(2)YZ类型具有热化学稳定性。一项化学键合研究表明,大多数这类合金都具有固有的结构变形趋势,并且我们预测会存在新的四方相Fe2CuGa(P4(2)/ ncm; a = 5.072埃,c = 7.634埃; c /大约为1.51),每个公式单位的饱和力矩为mu = 4.69 mu(B)。预计还会有十三个新的同型相显示出基本相同的行为。六相在反四边形排列中最稳定。使用Slater-Pauling方法分析了磁性能随价电子浓度变化的过程。

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