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Comparison of Nanohole-Type and Nanopillar-Type Patterned Metallic Electrodes Incorporated in Organic Solar Cells

机译:掺入有机太阳能电池中的纳米孔型和纳米柱型图案化金属电极的比较

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摘要

Both the nanohole- and nanopillar-type patterned metallic electrodes (PMEs) have been introduced in organic solar cells (OSCs) for improving device performances experimentally, but there is few work addressing the similarities and differences between them. In this theoretical work, we systematically compare the impact of the nanohole- and nanopillar-type PMEs on the performance of an OSC based on hybridized cavity resonances. By optimizing the geometrical parameters of each PME, we obtained an interesting result that the integrated absorption efficiencies in the active layer with different optimized PMEs are almost the same (both are equal to 82.4%), outperforming that of the planar control by 9.9%. Though the absorption enhancement spectra of the two different optimal devices are similar as well, the mechanisms of light trapping at the corresponding enhancement peaks are distinct from each other. In a comprehensive view, the nanopillar-type PME is suggested to be applied in the present system, since its optimal design has a moderate filling ratio, which is much easier to fabricate than its counterpart. This work could contribute to the development of high-efficiency OSCs.
机译:纳米孔型和纳米柱型图案化金属电极(PME)均已引入有机太阳能电池(OSC)中,以通过实验提高器件性能,但很少有研究解决它们之间的异同之处。在这项理论工作中,我们系统地比较了基于混合腔共振的纳米孔和纳米柱型PME对OSC性能的影响。通过优化每个PME的几何参数,我们得到了一个有趣的结果,即具有不同优化PME的有源层中的综合吸收效率几乎相同(均等于82.4%),比平面控制的综合吸收效率高9.9%。尽管两个不同的最佳装置的吸收增强光谱也相似,但是在相应的增强峰处的光捕获机制却彼此不同。综上所述,建议将纳米柱型PME用于本系统,因为其最佳设计具有适中的填充率,比其同类产品更容易制造。这项工作可能有助于开发高效的OSC。

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