首页> 外文期刊>The European physical journal, B. Condensed matter physics >A theoretical investigation of structural, mechanical, electronic and thermoelectric properties of orthorhombic CH3NH3PbI3
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A theoretical investigation of structural, mechanical, electronic and thermoelectric properties of orthorhombic CH3NH3PbI3

机译:正畸CH3PBI3结构,机械,电子和热电性能的理论研究

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The structural, mechanical, electronic and thermoelectric properties of the low temperature orthorhombic perovskite phase of CH3NH3PbI3 have been investigated using density functional theory (DFT). Elastic parameters bulk modulus B, Young's modulus E, shear modulus G, Poisson's ratio nu and anisotropy value A have been calculated by the Voigt-Reuss-Hill averaging scheme. Phonon dispersions of the structure were investigated using a finite displacement method. The relaxed system is dynamically stable, and the equilibrium elastic constants satisfy all the mechanical stability criteria for orthorhombic crystals, showing stability against the influence of external forces. The lattice thermal conductivity was calculated within the single-mode relaxation-time approximation of the Boltzmann equation from first-principles anharmonic lattice dynamics calculations. Our results show that lattice thermal conductivity is anisotropic, and the corresponding lattice thermal conductivity at 150K was found to be 0.189, 0.138, and 0.530Wm(-1) K-1 in the a, b, and c directions. Electronic structure calculations demonstrate that this compound has a DFT direct band gap at the gamma point of about 1.57 eV. The electronic transport properties have been calculated by solving the semiclassical Boltzmann transport equation on top of DFT calculations, within the constant relaxation time approximation. The Seebeck coefficient S is almost constant from 50 to 150 K. At temperatures 100 and 150 K, the maximal figure of merit is found to be 0.06 and 0.122 in the direction of the c-axis, respectively.
机译:使用密度泛函理论(DFT)研究了CH3NH3PBI3的低温正晶钙钛矿相的结构,机械,电子和热电性能。通过Voigt-Reuss-Hill平均方案计算了弹性参数Bulk模量B,杨氏模量e,剪切模量G,泊松比Nu和各向异性值A.使用有限位移方法研究了结构的声子分散体。轻松的系统是动态稳定的,平衡弹性常数满足正交晶体的所有机械稳定性标准,显示出抵抗外力影响的稳定性。从第一原理anharmonic格式动力学计算计算晶格导热率。我们的结果表明,晶格导热率是各向异性的,并且在A,B和C方向上发现相应的晶格导热率为0.189,0.138和0.530wm(-1)k-1。电子结构计算表明,该化合物在约1.57eV的伽马点处具有DFT直接带隙。通过在DFT计算顶部求解半定形的Boltzmann传输方程,在恒定的松弛时间近似下进行了电子传输特性。 Seebeck系数S几乎恒定地从50到150k。在温度100和150k时,在C轴的方向上分别发现最大优异的最大值为0.06和0.122。

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