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The influence of electrical effects on device performance of organic solar cells with nano-structured electrodes

机译:电效应对具有纳米结构电极的有机太阳能电池器件性能的影响

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摘要

Integration of light-trapping features and exploitation of metal nanostructure plasmonic effects are promising approaches for enhancing the power conversion efficiency of organic solar cells. These approaches’ effects on the light absorption enhancement have been widely studied, especially in inorganic devices. While this light-trapping concept can be transferred to organic devices, one has to also consider nanostructure-induced electrical effects on the device performance, due to the fundamental difference in the organic semiconducting material properties compared to their inorganic counterparts. In this contribution, we exemplarily model the electrical properties of organic solar cells with rectangular-grating structures, as compared to planar reference devices. Based on our numeric results, we demonstrate that, beyond an optical absorption enhancement, the device fill factor improves significantly by introducing the grating structures. From the simulations we conclude that enhanced carrier collection efficiency is the main reason for the increased solar cell fill factor. This work contributes towards a more fundamental understanding of the effect of nanostructured electrodes on the electrical properties of organic solar cells.
机译:捕光功能的集成和金属纳米结构等离子体效应的开发是提高有机太阳能电池功率转换效率的有前途的方法。这些方法对光吸收增强的影响已得到广泛研究,尤其是在无机器件中。尽管可以将这种捕光概念转移到有机器件中,但由于有机半导体材料的性能与无机材料相比存在根本差异,因此还必须考虑纳米结构对器件性能的电影响。在此贡献中,我们示例性地模拟了与平面参考设备相比具有矩形光栅结构的有机太阳能电池的电性能。根据我们的数值结果,我们证明,除了光学吸收增强以外,通过引入光栅结构,器件填充因子也得到了显着改善。从仿真中我们得出结论,提高的载流子收集效率是增加太阳能电池填充因子的主要原因。这项工作有助于对纳米结构电极对有机太阳能电池电性能的影响有更基本的了解。

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