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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >DFT analysis and FDTD simulation of CH3NH3PbI3-xClx mixed halide perovskite solar cells: role of halide mixing and light trapping technique
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DFT analysis and FDTD simulation of CH3NH3PbI3-xClx mixed halide perovskite solar cells: role of halide mixing and light trapping technique

机译:CH3NH3PBI3-XCLX混合卤化物钙钛矿太阳能电池的DFT分析和FDTD模拟:卤化物混合和轻俘获技术的作用

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Since perovskite solar cells have attracted a great deal of attention over the past few years, the enhancement of their optical absorption and current density are among the basic upcoming challenges. For this reason, first, we have studied the structural and optical properties of organic-inorganic hybrid halide perovskite CH3NH3PbI3 and the compounds doped by chlorine halogen CH3NH3PbI3-xClx in the cubic phase by using a density functional theory (DFT). Then, we model a single-junction perovskite solar cell based on a full solution to Maxwell's equations, using a finite difference time domain (FDTD) technique, which helps us to investigate the light absorption efficiency and optical current density of the cell with CH3NH3PbI3-xClx (x = 0, 1, 2, 3) as the active layer. The results suggest that increasing the amount of chlorine in CH3NH3PbI3-xClx compound leads to an increase in the bandgap energy, as well as a decrease in the lattice constants and optical properties, like the refractive index and extinction coefficient of the structure. Also, the results obtained by the simulation express that by taking advantage of the light trapping techniques of SiO2, a remarkable increase of light absorption will be achieved to the magnitude of 83.13%, which is noticeable.
机译:由于普遍的太阳能电池在过去几年中引起了大量关注,因此他们的光学吸收和电流密度的增强是基本的即将到来的挑战之一。因此,首先,我们研究了有机 - 无机杂交卤化物钙钛矿CH3NH3PBI3的结构和光学性质,并通过使用密度函数理论(DFT)在立方相中掺杂氯卤素CH3NH3PBI3-XCLX的化合物。然后,我们使用有限差分时域(FDTD)技术来基于全部解决方案的全部解决方案来模拟一个单结普罗斯基钛矿太阳能电池,这有助于我们研究CH3NH3PBI3-的光吸收效率和光学电流密度XCLX(x = 0,1,2,3)作为活动层。结果表明,增加CH3NH3PBI3-XCLX化合物中氯的量导致带隙能量的增加,以及晶格常数和光学性质的降低,如结构的折射率和消光系数。而且,通过模拟表达获得的结果,通过利用SiO 2的光捕获技术,将实现光吸收的显着增加,其幅度为83.13%,这是明显的。

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