通过GGA、GGA + mBJ和GGA + U近似分析RhY2O4氧化尖晶石的半导体特性

IF 1.7 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Fermin Ak, Evren Görkem Özdemir, Hossein A. Rahnamaye Aliabad
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引用次数: 0

摘要

用第一性原理近似法研究了氧化尖晶石的半导体性质。根据优化曲线,利用GGA近似得到了平衡晶格参数为9.46 Å的RhY2O4铁磁体。当U = 1、2、3和4 eV时,得到的晶格参数分别为9.49 Å、9.52 Å、9.55 Å和9.58 Å。GGA近似得到的带隙值具有最低的半导体特征,多数电子自旋为0.352 eV,少数电子自旋为0.134 eV。在多数和少数电子自旋中均观察到直接和间接带隙。弹性计算证实了RhY2O4的弹性稳定性。进一步确定了在0 GPa压力下的德拜温度为480.942 K。在此压力下泊松比和B/G比分别为0.278和1.92。结果表明,RhY2O4尖晶石具有延展性。然而,随着压力的增加,脆性在10gpa左右开始。RhY2O4的总磁矩为6000µB/f.u。RhY2O4具有良好的弹性、磁性和电子特性,是半导体应用中很有前途的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Semiconducting character analysis of RhY2O4 oxide spinel via GGA, GGA + mBJ, and GGA + U approximations

The semiconducting character of RhY2O4 oxide spinel was investigated using first-principles approximations. As a result of the optimization curve, RhY2O4 was obtained as a ferromagnet with an equilibrium lattice parameter of 9.46 Å with the help of the GGA approximation. When U = 1, 2, 3, and 4 eV were used, the lattice parameters were obtained as 9.49 Å, 9.52 Å, 9.55 Å, and 9.58 Å, respectively. The GGA approximation yielded the band gap values with the lowest semiconductor character, measuring 0.352 eV for the majority electron spin and 0.134 eV for the minority electron spin. Both direct and indirect band gaps were observed in the majority and minority electron spins. Elastic calculations confirmed the elastic stability of RhY2O4. Furthermore, the Debye temperature was determined to be 480.942 K at 0 GPa pressure. Poisson’s and B/G ratios were obtained at this pressure as 0.278 and 1.92, respectively. According to these results, RhY2O4 spinel is ductile. However, with increasing pressure, brittleness properties begin at about 10 GPa. RhY2O4 has a total magnetic moment of 6.000 µB/f.u. RhY2O4 is a promising candidate for semiconductor applications, characterized by advantageous elastic, magnetic, and electronic properties.

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来源期刊
Indian Journal of Physics
Indian Journal of Physics 物理-物理:综合
CiteScore
3.40
自引率
10.00%
发文量
275
审稿时长
3-8 weeks
期刊介绍: Indian Journal of Physics is a monthly research journal in English published by the Indian Association for the Cultivation of Sciences in collaboration with the Indian Physical Society. The journal publishes refereed papers covering current research in Physics in the following category: Astrophysics, Atmospheric and Space physics; Atomic & Molecular Physics; Biophysics; Condensed Matter & Materials Physics; General & Interdisciplinary Physics; Nonlinear dynamics & Complex Systems; Nuclear Physics; Optics and Spectroscopy; Particle Physics; Plasma Physics; Relativity & Cosmology; Statistical Physics.
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