Sr -过渡金属取代对Mg2Si电子力学性能影响的DFT研究

IF 0.5 Q4 PHYSICS, MULTIDISCIPLINARY
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引用次数: 0

摘要

摘要:近年来,镁合金因其在热电、压电、光伏和红外光子学等领域的重要应用而引起了科学界的广泛关注。本文利用在Quantum Espresso代码中实现的带有伪势平面波(PPW)方法的密度泛函理论(DFT)研究了MgXSi (X = Mg, Sr)化合物的电子和弹性性质。Mg2Si弹性常数的计算结果与前人的理论计算结果一致,与实验数据的比较也很好。这些半导体的电子能带结构计算表明,Mg2Si和MgSrSi的间接带隙和直接带隙分别较窄。我们的结果表明,这两种化合物是机械稳定的。Pugh比(B/G)表明Mg2Si和MgSrSi具有脆性和延展性。各向异性参数A表明,与MgSrSi相比,Mg2Si具有更高程度的弹性各向同性。给出了化合物的杨氏模量和面积模量的三维投影。关键词:电子结构,弹性常数,力学性能,Mg2Si, MgSrSipac: 31.15。- 62.20。F - 71.55。我,71.20.Be。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Sr - Transition Metal Substitution on Electronic and Mechanical Properties of Mg2Si: A DFT Study
Abstract: Recently, magnesium alloys have attracted scientific interest due to their technological importance in thermoelectric, piezoelectric, photo-voltaic and infrared photonics applications. The electronic and elastic properties of MgXSi (X = Mg, Sr) compounds were investigated in this work, using the density functional theory (DFT) with pseudo-potential plane-waves (PPW) approach as implemented in Quantum Espresso code. The results of the elastic constants of Mg2Si are in agreement with the previous theoretical results and favourably compared with experimental data. The electronic band structures of these semiconductors were calculated to give narrow indirect and direct band gaps of Mg2Si and MgSrSi, respectively. Our results show that the two compounds are mechanically stable. The Pugh’s ratio, B/G, indicated that Mg2Si and MgSrSi are brittle and ductile in nature. The estimated anisotropy parameter, A, shows that Mg2Si has a higher degree of elastic isotropy in comparison to MgSrSi. Three-dimensional (3D) projection of Young’s modulus and area modulus of the compounds was presented. Keywords: Electronic structure, Elastic constants, Mechanical properties, Mg2Si, MgSrSi. PACS: 31.15.A-, 62.20.F-, 71.55.-i, 71.20.Be.
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来源期刊
Jordan Journal of Physics
Jordan Journal of Physics PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.90
自引率
14.30%
发文量
38
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