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探索TlWX(X = Cl和Br)双钙钛矿的半金属铁磁性和热电性能。

Exploring half-metallic ferromagnetism and thermoelectric properties of TlWX (X = Cl and Br) double perovskites.

作者信息

Mustafa Ghulam M, Ullah Zaka, Ameer M Adil, Noor N A, Mumtaz Sohail, Al-Sadoon Mohammad K

机构信息

Department of Physics, Division of Science and Technology, University of Education Lahore Punjab 54770 Pakistan

Department of Physics, Riphah International University Campus Lahore 53700 Pakistan.

出版信息

RSC Adv. 2024 Jun 10;14(26):18385-18394. doi: 10.1039/d4ra02465f. eCollection 2024 Jun 6.

Abstract

Half-metallic semiconductors typically exhibit 100% spin polarization at the Fermi level which makes them desired materials for spintronic applications. In this study, we reported a half-metallic ferromagnetic nature in vacancy-ordered double perovskites TlWX (X = Cl and Br). The magnetic, electronic, and thermoelectric properties of the material are studied by the use of density functional theory (DFT). For the calculations of exchange-correlation potential, PBE-sol is employed while more accurate electronic band structure and density of states (DOS) are calculated by the mBJ potential. Both materials exhibited structural stability in the cubic structure with 3̄ space-group. The mechanical stability is confirmed by their computed elastic constants while their thermodynamic stability is attested by negative formation energy. The spin-based volume optimization suggested the ferromagnetic nature of the materials which is further confirmed by the negative value of the exchange energy (pd). Moreover, computed magnetic moment value for TlWCl and TlWBr is 2 μB and the majority of this comes from W. The spin-polarized band structure and DOS confirmed that both materials are half-metallic and at the Fermi level they exhibit 100% spin polarization. Furthermore, in the spin-down state, materials behave as semiconductors with wide bandgaps. Lastly, the thermoelectric properties are evaluated by the BoltzTrap code. The thermoelectric parameters which include the Seebeck coefficient, electrical conductivity, thermal conductivity, power factor, and figure of merit () are investigated in the range of temperatures from 200 to 800 K. The half-metallic ferromagnetic and thermoelectric characteristics make these materials desired for spintronics and thermoelectric applications.

摘要

半金属半导体通常在费米能级处表现出100%的自旋极化,这使其成为自旋电子学应用的理想材料。在本研究中,我们报道了空位有序双钙钛矿TlWX(X = Cl和Br)中的半金属铁磁性质。利用密度泛函理论(DFT)研究了该材料的磁、电和热电性质。在计算交换相关势时采用了PBE-sol,而通过mBJ势计算了更精确的电子能带结构和态密度(DOS)。两种材料在具有3̄空间群的立方结构中均表现出结构稳定性。通过计算得到的弹性常数证实了其力学稳定性,而负的形成能证明了其热力学稳定性。基于自旋的体积优化表明了材料的铁磁性质,交换能(pd)的负值进一步证实了这一点。此外,计算得到的TlWCl和TlWBr的磁矩值为2 μB,其中大部分来自W。自旋极化能带结构和DOS证实这两种材料都是半金属,并且在费米能级处它们表现出100%的自旋极化。此外,在自旋向下状态下,材料表现为具有宽带隙的半导体。最后,通过BoltzTrap代码评估了热电性质。在200至800 K的温度范围内研究了包括塞贝克系数、电导率、热导率、功率因数和优值()在内的热电参数。半金属铁磁和热电特性使这些材料成为自旋电子学和热电应用的理想选择。

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