SCAPS-1D 模拟和优化有机太阳能电池

Andreea-Georgiana Ulăreanu, Andrei Drăgulinescu
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摘要

本文旨在描述、模拟和优化有机太阳能电池的性能特征。本文使用 SCAPS-1D 软件资源来评估这种有机太阳能电池的特性,针对最有代表性的设备性能参数(如有机层和构成太阳能电池的其他层的厚度、入射到设备表面的光强度、电子亲和力等)以及降低其性能的模拟参数(吸收材料内部可能出现的缺陷密度以及工作温度升高的影响)的不同值进行评估。对光伏装置的结构进行了建模,并模拟和解释了光照和黑暗条件下的 I-V(强度与电压)特性、开路电压、短路强度、填充因子、功率转换效率等特性和数量。通过精心选择参数,该电池的效率从 10.17% 提高到了 16.93%。在保持太阳能电池良好稳定性能的同时,还可以通过修改电池层的其他参数和特性来进一步优化所提出的太阳能电池。
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SCAPS-1D simulation and optimization of an organic solar cell
The aim of this paper is to characterize, simulate and optimize the performance characteristics of an organic solar cell. The software resource SCAPS-1D was used to evaluate the characteristics of this organic solar cell, for different values of the most representative device performance parameters (such as the thickness of the organic layer and of the other layers that make up the solar cell, the intensity of light incident on the surface of the device, the electron affinity, etc.) and of the parameters that model the factors that diminish its performance (the density of defects that can appear inside the absorber material, and the effects of increasing the working temperature). The structure of the photovoltaic device was modeled, and characteristics and quantities such as I-V (intensity vs. voltage) characteristic in light and dark conditions, respectively, open-circuit voltage, short-circuit intensity, fill factor, power conversion efficiency and others were simulated and interpreted. By a careful choice of parameters, an improvement of the efficiency of the cell was obtained, from 10.17% to 16.93%. The proposed solar cell can be further optimized by modifying other parameters and properties of the cell layers, while maintaining a good stability performance of the solar cell.
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