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Structural electronic magnetic half-metallic mechanical and thermodynamic properties of the quaternary Heusler compound FeCrRuSi: A first-principles study

机译:四元Heusler化合物FeCrRuSi的结构电子磁性半金属机械和热力学性质:第一性原理研究

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摘要

In this paper, we have investigated the structural, electronic, magnetic, half-metallic, mechanical, and thermodynamic properties of the equiatomic quaternary Heusler (EQH) compound FeCrRuSi using the density functional theory (DFT) and the quasi-harmonic Debye model. Our results reveal that FeCrRuSi is a half-metallic material (HMM) with a total magnetic moment of 2.0 μB in agreement with the well-known Slater-Pauling rule Mt = Zt − 24. Furthermore, the origin of the half-metallic band gap in FeCrRuSi is well studied through a schematic diagram of the possible d-d hybridization between Fe, Cr and Ru elements. The half-metallic behavior of FeCrRuSi can be maintained in a relatively wide range of variations of the lattice constant (5.5–5.8 Å) under uniform strain and the c/a ratio (0.96–1.05) under tetragonal distortion. The calculated phonon dispersion, cohesive and formation energies, and mechanical properties reveal that FeCrRuSi is stable with an EQH structure. Importantly, the compound of interest has been prepared and is found to exist in an EQH type structure with the presence of some B2 disorder. Moreover, the thermodynamic properties, such as the thermal expansion coefficient α, the heat capacity CV, the Grüneisen constant γ, and the Debye temperature ΘD are calculated.
机译:在本文中,我们使用密度泛函理论(DFT)和准谐波Debye模型研究了等原子四元Heusler(EQH)复合FeCrRuSi的结构,电子,磁性,半金属,机械和热力学性质。我们的结果表明,FeCrRuSi是一种半金属材料(HMM),与众所周知的Slater-Pauling规则Mt = Zt − 24一致,总磁矩为2.0μB。通过Fe,Cr和Ru元素之间可能的dd杂交的示意图,对FeCrRuSi中的Si进行了很好的研究。 FeCrRuSi的半金属行为可以在相对均匀的应变下晶格常数(5.5-5.8Å)和在四边形畸变下的c / a比(0.96-1.05)的相对较大范围内保持。计算得出的声子色散,内聚能和形成能以及机械性能表明,FeCrRuSi具有EQH结构是稳定的。重要的是,已经制备了目标化合物,发现该化合物以EQH型结构存在并且存在一些B2障碍。此外,计算热膨胀系数α,热容CV,Grüneisen常数γ和德拜温度ΘD等热力学性质。

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