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首页> 外文期刊>Journal of Electronic Materials >Elastic, Optoelectronic and Thermoelectric Properties of the Lead-Free Halide Semiconductors Cs2AgBiX6 (X = Cl, Br): Ab Initio Investigation
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Elastic, Optoelectronic and Thermoelectric Properties of the Lead-Free Halide Semiconductors Cs2AgBiX6 (X = Cl, Br): Ab Initio Investigation

机译:无铅卤化物半导体CS2AGBIX6(X = CL,BR):AB初探的弹性,光电和热电性能

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摘要

We report a detailed investigation of the elastic moduli, electronic band structure, density of states, chemical bonding, electron and hole effective masses, optical response functions and thermoelectric properties of the lead-free halide double perovskites Cs2AgBiCl6 and Cs2AgBiBr6 using the full potential linearized augmented plane wave (FP-LAPW) method with the generalized gradient approximation (GGA-PBEsol) and the Tran-Blaha modified Becke-Johnson (TB-mBJ) potential. Because of the presence of heavy elements in the studied compounds, we include the spin-orbit coupling (SOC) effect. Our calculated structural parameters agree very well with the available experimental and theoretical findings. Single-crystal and polycrystalline elastic constants are predicted using the total-energy versus strain approach. Three-dimensional representations of the crystallographic direction dependence on the shear modulus, Young's modulus and Poisson's ratio demonstrate a noticeable elastic anisotropy. The TB-mBJ potential with SOC yields an indirect band gap of 2.44 (1.93) eV for Cs2AgBiCl6 (Cs2AgBiBr6), in good agreement with the existing experimental data. The chemical bonding features are probed via density of states and valence electron density distribution calculations. Optical response functions were predicted from the calculated band structure. Both of the investigated compounds have a significant absorption coefficient (similar to 25 x 10(4) cm(-1)) in the visible range of sunlight. The thermoelectric properties of the title compounds were investigated using the FP-LAPW approach in combination with the semi-classical Boltzmann transport theory. The Cs2AgBiCl6 and Cs2AgBiBr6 compounds have a large thermopower S, which makes them potential candidates for thermoelectric applications.
机译:我们报告了对弹性模量,电子带结构,状态密度,化学粘合,电子和空穴有效质量,光学响应功能和热电性能的详细研究,使用全电位线性化增强的无铅卤化物双钙纤维的CS2AGBICL6和CS2AGBIBR的热电性能平面波(FP-LAPW)方法具有广义梯度近似(GGA-PBESOL)和TRAN-BLAHA修改的BECKE-JOCKON(TB-MBJ)电位。由于研究的化合物中存在重量的重量,我们包括旋转轨道耦合(SOC)效应。我们计算的结构参数与可用的实验和理论发现非常吻合。使用总能量与应变方法预测单晶和多晶弹性常数。结晶方向依赖剪切模量,杨氏模量和泊松比的三维表示表明了显着的弹性各向异性。具有SOC的TB-MBJ电位产生2.44(1.93)EV的间接带隙,用于CS2AGBICL6(CS2AGBIBR6),与现有的实验数据吻合良好。通过状态和价电子密度分布计算的密度探测化学键合特征。从计算的带结构预测光学响应函数。两种研究化合物具有显着的吸收系数(类似于25×10(4 )cm(-1)),在可见的阳光范围内。使用FP-LAPW方法与半古典Boltzmann运输理论结合研究了标题化合物的热电性能。 CS2AGBICL6和CS2AGBIBR6化合物具有大的热电驱动器,使其成为热电应用的潜在候选者。

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