太阳能电池用双钙离子Li2CuBiZ6 (Z = Cl, Br, I)的机械、光电和热电性能研究

IF 6 2区 工程技术 Q2 ENERGY & FUELS Solar Energy Pub Date : 2023-11-01 DOI:10.1016/j.solener.2023.112079
Huda A. Alburaih , N.A. Noor , A. Laref , M. Musa Saad H.-E.
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引用次数: 0

摘要

由于其在光电和热电器件中的潜在应用,锂基双钙钛矿(DPs)已被广泛研究。本文从理论上研究了DPs Li2CuBiZ6 (Z = Cl, Br, I)的力学、光电和热电特性。我们使用广义梯度近似(PBEsol)来研究这些化合物的结构和弹性特性,而使用改进的Becke-Johnson (mBJ)泛函来获得与实验观察相一致的热电和电子特性。对于所有DPs的稳定性,研究了Born准则和地层能量。研究了立方对称的弹性常数,以确定延性和脆性、各向异性和德拜温度之间的差异。Li2CuBiCl6、Li2CuBiBr6和Li2CuBiI6的带隙分别为2.0 eV、1.7 eV和1.3 eV,由mBJ电位决定。所有DPs还检查了0-10 eV能量范围内的光吸收、折射率和介电常数,以确保可见光区域的吸收。此外,由于较低的晶格热,较高的塞贝克系数,热导率和优点图(ZT),所有dp都是热电应用的合适候选者,这些都是玻尔兹曼经典理论所阐明的。
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Investigation of mechanical, optoelectronic, and thermoelectric properties of double perovksites Li2CuBiZ6 (Z = Cl, Br, I) for solar cell applications

Due to their potential applications for optoelectronic and thermoelectric devices, Li-based double perovskites (DPs) have been widely investigated. In current article, we theoretically examined the mechanical, optoelectronic and thermoelectric features of DPs Li2CuBiZ6 (Z = Cl, Br, I). We employ the generalized gradient approximation (PBEsol) for examining the structural and elastic characteristics of these compounds, while the modified Becke-Johnson (mBJ) functional is used for obtaining an improved accord of the thermoelectric and electronic characteristics with experimental observations. For the stability of all DPs, the Born Criteria and formation energy are investigated. The cubic symmetry's elastic constants are examined to determine the difference between ductile and brittle nature, anisotropy, and Debye temperatures. The bandgaps are 2.0 eV, 1.7 eV, and 1.3 eV, for Li2CuBiCl6, Li2CuBiBr6, and Li2CuBiI6, respectively, as determined by the mBJ potential. All DPs were also examined regarding optical absorption, refractive index, and dielectric constants for the energy range 0–10 eV, ensuring the absorption among visible regions. Furthermore, all DPs are appropriate candidates for thermoelectric applications due to the lower lattice thermal, higher Seebeck coefficient, thermal conductivity, and Figure of merit (ZT), which are all elucidated by Boltzmann classical theory.

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来源期刊
Solar Energy
Solar Energy 工程技术-能源与燃料
CiteScore
13.90
自引率
9.00%
发文量
0
审稿时长
47 days
期刊介绍: Solar Energy welcomes manuscripts presenting information not previously published in journals on any aspect of solar energy research, development, application, measurement or policy. The term "solar energy" in this context includes the indirect uses such as wind energy and biomass
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