Density functional prediction of the structural, elastic, electronic, and thermodynamic properties of the cubic and hexagonal (c, h)-Fe2Hf

M. Hemici, T. Chihi, M. A. Ghebouli, F. Messaoud, B. Ghebouli, S. I. Ahmad
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Abstract

Using density functional theory (DFT), the structural, elastic, electronic, and thermodynamic properties of Fe2Hf in the cubic and hexagonal solid phases with Fd-3m and P63/mmc are reported with generalized gradient approximations (GGA). To achieve energy convergence, we report the k-point mesh density and plane-wave energy cut-offs. The calculated equilibrium parameters are in good agreement with the available theoretical data. A complete elastic tensor and crystal anisotropies of the ultra-incompressible Fe2Hf are determined in the wide pressure range. Finally, by using the quasi-harmonic Debye Model, the isothermal and adiabatic bulk modulus and heat capacity of Fe2Hf are also successfully obtained in the present work. By the elastic stability criteria, it is predicted that Fd-3m and P63/mmc structures of Fe2Hf are stable in the pressure range studied, respectively.
立方和六方(c, h)-Fe2Hf结构、弹性、电子和热力学性质的密度泛函预测
利用密度泛函理论(DFT),用广义梯度近似(GGA)报道了Fe2Hf在Fd-3m和P63/mmc的立方固相和六方固相中的结构、弹性、电子和热力学性质。为了实现能量收敛,我们报告了k点网格密度和平面波能量截止点。计算的平衡参数与现有理论数据吻合较好。在宽压力范围内确定了超不可压缩Fe2Hf的完全弹性张量和晶体各向异性。最后,利用拟调和Debye模型,成功地得到了Fe2Hf的等温和绝热体积模量和热容。根据弹性稳定性判据,预测Fd-3m和P63/mmc结构在研究压力范围内是稳定的。
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