论文标题

第一原理研究半手合金Zrcoy的结构,机械,电子和晶格动力学特性(Y = SB,BI)

First Principles Study of the Structural, Mechanical, Electronic, and Lattice Dynamical Properties of the Half-Heusler Alloys ZrCoY (Y=Sb, Bi )

论文作者

Allan, Lynet, Mulwa, Winfred M., Musembi, Robinson J., Aduda, Bernard O.

论文摘要

第一原理的计算导致了材料科学的重要发现。由于其热稳定性,机械强度和适度的ZT,一半是潜在的热电材料的Heusler(HH)合金已显示出热电性能的显着改善。使用密度函数理论(DFT),已经研究了Cubic Half Heusler合金Zrcoy(Y = SB,BI)的结构,机械,电子和晶格动力学特性。使用通用梯度近似(GGA)伪电势波接近未知的交换相关函数。结构参数,即晶格常数,弹性常数及其衍生物与可用的实验和理论研究一致。使用基于弹性常数的Voigt-Reuss-Hill平均方法计算机械性能,例如各向异性因子A,剪切模量G,Bulk Modulus B,Youngs Modulus E和Poisons比率N。 Debyes温度以及纵向和横向声速度由GGA-PBE和GW近似值的弹性常数预测。对弹性常数的研究表明,这些化合物在机械上是稳定的,声子分散研究表明它们在动态上也是稳定的。化合物的延展性和各向异性性质通过弹性常数和机械性能证实。

First-principles calculation has led to significant discoveries in materials science. Half heusler (HH) alloys, which are potential thermoelectric materials have demonstrated significant improvements in thermoelectric performance owing to their thermal stability, mechanical strength, and moderate ZT. Using Density Functional Theory (DFT), the structural, mechanical, electronic, and lattice dynamical properties of cubic Half Heusler alloys ZrCoY (Y=Sb, Bi) have been investigated. The unknown exchange-correlation functional is approximated using the generalized gradient approximation (GGA) pseudopotential plane-wave approach. The structural parameters, that is, equilibrium lattice constant, elastic constants, and their derivatives are consistent with reported experimental and theoretical studies where available. Mechanical properties such as anisotropy factor A, shear modulus G, bulk modulus B, Youngs modulus E, and Poisons ratio n, are calculated using the Voigt-Reuss-Hill average approach based on elastic constants. The Debyes temperature, as well as longitudinal and transverse sound velocities, are predicted from elastic constants at GGA-PBE and GW approximations. The study of elastic constants showed that the compounds are mechanically stable, and the phonon dispersion study showed that they are dynamically stable as well. The ductility and anisotropic nature of the compounds are confirmed by the elastic constants and mechanical properties.

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