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Modeling Thin Film Solar Cells: From Organic to Perovskite

机译:薄膜太阳能电池建模:从有机到钙钛矿

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摘要

Device model simulation is one of the primary tools for modeling thin film solar cells from organic materials to organic–inorganic perovskite materials. By directly connecting the current density–voltage ( – ) curves to the underlying device physics, it is helpful in revealing the working mechanism of the heatedly discussed organic–inorganic hybrid perovskite solar cells. Some distinctive optoelectronic features need more phenomenological models and accurate simulations. Herein, the application of the device model method in the simulation of organic and organic–inorganic perovskite solar cells is reviewed. To this end, the ways of the device model are elucidated by discussing the metal–insulator–metal picture and the equations describing the physics. Next, the simulations on – curves of organic solar cells are given in the presence of the space charge, interface, charge injection, traps, or exciton. In the perovskite section, the effects of trap states, direct band recombination, surface recombination, and ion migration on the device performance are systematically discussed from the perspective of the device model simulation. Suggestions for designing perovskite devices with better performance are also given.
机译:器件模型仿真是从有机材料到有机-无机钙钛矿材料对薄膜太阳能电池建模的主要工具之一。通过将电流密度-电压(-)曲线直接连接到基础的器件物理上,有助于揭示经过热烈讨论的有机-无机杂化钙钛矿太阳能电池的工作机理。一些独特的光电功能需要更多的现象学模型和精确的模拟。在此,综述了器件模型方法在有机和有机-无机钙钛矿太阳能电池模拟中的应用。为此,通过讨论金属-绝缘体-金属图片和描述物理的方程式,阐明了器件模型的方式。接下来,在存在空间电荷,界面,电荷注入,陷阱或激子的情况下,对有机太阳能电池的–曲线进行了仿真。在钙钛矿部分,从器件模型仿真的角度系统地讨论了陷阱态,直接带重组,表面重组和离子迁移对器件性能的影响。还提出了设计性能更好的钙钛矿装置的建议。

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