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采用密度泛函理论结合半经典玻尔兹曼理论研究重费米子CeRhIn的热电性质。

Thermoelectric properties of heavy fermion CeRhIn using density functional theory combined with semiclassical Boltzmann theory.

作者信息

Yazdani-Kachoei M, Jalali-Asadabadi S

机构信息

Department of Physics, Faculty of Sciences, University of Isfahan (UI) Hezar Gerib Avenue Isfahan 81746-73441 Iran

出版信息

RSC Adv. 2019 Nov 6;9(62):36182-36197. doi: 10.1039/c9ra07859b. eCollection 2019 Nov 4.

Abstract

Experimental evidences show that Ce-based compounds can be good candidates for thermoelectric applications due to their high thermoelectric efficiencies at low temperatures. However, thermoelectric properties have been studied less than the other properties for CeRhIn, a technologically and fundamentally important compound. Thus, we comprehensively investigate the thermoelectric properties, including the Seebeck coefficient, electrical conductivity, electronic part of thermal conductivity, power factor and electronic figure of merit, by a combination of quantum mechanical density functional and semiclassical Boltzmann theories, including relativistic spin-orbit interactions using different exchange-correlation functionals at temperatures ≤ 300 K for CeRhIn along its and crystalline axes. The temperature dependences of the thermoelectric quantities are investigated. Our results reveal a better Seebeck coefficient, electrical conductivity, power factor and thermoelectric efficiency at ≪ 300, in agreement with various other Ce-based compounds, when a high degree of localization is considered for the 4f-Ce electrons. The Seebeck coefficient, power factor and thermoelectric efficiency are made more efficient near room temperature by decreasing the degree of localization for 4f-Ce electrons. Our results also show that the thermoelectric efficiency along the crystalline axis is slightly better than that of the axis. We also investigate the effects of hydrostatic pressure on the thermoelectric properties of the compound at low and high temperatures. The results show that the effects of imposing pressure strongly depend on the degree of localization considered for 4f-Ce electrons.

摘要

实验证据表明,基于铈的化合物因其在低温下具有较高的热电效率,有望成为热电应用的良好候选材料。然而,对于铈铑铟(CeRhIn)这种在技术和基础研究方面都很重要的化合物,其热电性质的研究比其他性质要少。因此,我们通过量子力学密度泛函和半经典玻尔兹曼理论相结合的方法,包括使用不同的交换关联泛函考虑相对论自旋轨道相互作用,在温度≤300 K的条件下,沿着CeRhIn的a和c晶轴全面研究其热电性质,包括塞贝克系数、电导率、热导率的电子部分、功率因数和电子品质因数。研究了热电参数的温度依赖性。我们的结果表明,当考虑4f铈电子的高度局域化时,在T≪300时,塞贝克系数、电导率、功率因数和热电效率更好,这与其他各种基于铈的化合物一致。通过降低4f铈电子的局域化程度,塞贝克系数、功率因数和热电效率在室温附近变得更高效。我们的结果还表明,沿着c晶轴的热电效率略优于a轴。我们还研究了静水压力对该化合物在低温和高温下热电性质的影响。结果表明,施加压力的影响强烈依赖于所考虑的4f铈电子的局域化程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ffd/9074952/ad8f9e2fd474/c9ra07859b-f1.jpg

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