Ba2SmMoO6 和 Ba2EuMoO6 双包晶中的自旋特性和热电性能的第一性原理研究

IF 2.8 3区 物理与天体物理 Q2 PHYSICS, CONDENSED MATTER
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引用次数: 0

摘要

这项研究采用广义梯度逼近(GGA)和修正贝克-约翰逊(mBJ)交换相关函数,并运用全电位线性化增强平面波(FP-LAPW)方法进行了第一原理计算。主要目的是研究双包晶石 Ba2SmMoO6 和 Ba2EuMoO6。我们对这些材料的结构、电学、磁学、热电和光学特性进行了深入分析。根据结构研究,这两种化合物在铁磁相中都很稳定。Ba2SmMoO6 的能隙为 3.80 eV,与 W-X 方向一致,表现出半金属性。另一方面,利用 mBJ-GGA 方法,Ba2EuMoO6 的能隙为 3.03 eV,与 X-X 方向直接对齐。磁性研究显示,Ba2EuMoO6 的总自旋磁矩为 7 μB,主要来自 Eu(5.98 μB);Ba2SmMoO6 的总自旋磁矩为 6 μB,主要来自 Sm(4.53 μB)。研究发现,这两种材料在高温下都具有较高的塞贝克系数和电导率,性能随温度的升高而提高。然而,它们的优点系数(ZT)接近 1,这表明它们在高温热电应用中具有潜力。Ba2SmMoO6 和 Ba2EuMoO6 被认为是高效热电设备的最佳选择。高紫外线吸收率、独特的折射和反射特性为光子学、光学涂层和其他需要精确光操控的领域提供了潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First-principles investigation of spin characteristics and thermoelectric properties in Ba2SmMoO6 and Ba2EuMoO6 double perovskites

This investigation employs first-principles calculations with the Generalized Gradient Approximation (GGA) and modified Becke-Johnson (mBJ) exchange-correlation functionals, employing the Full-Potential Linearized Augmented Plane Wave (FP-LAPW) method. The main objective is to investigate the double perovskites Ba2SmMoO6 and Ba2EuMoO6. We conduct a thorough analysis of the structural, electrical, magnetic, thermoelectric and optical properties of these materials. Both compounds are stable in ferromagnetic phase, according to structural studies. Ba2SmMoO6 has a 3.80 eV energy gap, aligned with the W-X direction, which exhibits half-metallic behavior. On the other hand, Ba2EuMoO6 has a 3.03 eV energy gap that is directly aligned with the X-X direction, using mBJ-GGA. Magnetic investigation revealed a total spin magnetic moment of 7 μB for Ba2EuMoO6, mainly due to Eu (5.98 μB) and 6 μB for Ba2SmMoO6, mainly due to Sm (4.53 μB). It was found that both materials have high Seebeck coefficients and electrical conductivities at high temperatures, with performance improving with temperature. However, the figure of merit (ZT) approaches a value of one, indicating their potential for use in thermoelectric applications at high temperatures. Ba2SmMoO6 and Ba2EuMoO6 are identified as highly favourable options for effective thermoelectric devices. The high UV absorption, the unique refractive and reflective properties offer potential in photonics, optical coatings, and other fields requiring precise light manipulation.

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来源期刊
Physica B-condensed Matter
Physica B-condensed Matter 物理-物理:凝聚态物理
CiteScore
4.90
自引率
7.10%
发文量
703
审稿时长
44 days
期刊介绍: Physica B: Condensed Matter comprises all condensed matter and material physics that involve theoretical, computational and experimental work. Papers should contain further developments and a proper discussion on the physics of experimental or theoretical results in one of the following areas: -Magnetism -Materials physics -Nanostructures and nanomaterials -Optics and optical materials -Quantum materials -Semiconductors -Strongly correlated systems -Superconductivity -Surfaces and interfaces
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