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Plasmonic polymer tandem solar cell

机译:等离子体聚合物串联太阳能电池

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摘要

We demonstrated plasmonic effects in an inverted tandem polymer solar cell configuration by blending Au nanoparticles (NPs) into the interconnecting layer (ICL) that connects two subcells. Experimental results showed this plasmonic enhanced ICL improves both the top and bottom subcells' efficiency simultaneously by enhancing optical absorption. The presence of Au NPs did not cause electrical characteristics to degrade within the tandem cell. As a result, a 20% improvement of power conversion efficiency has been attained by the light concentration of Au NPs via plasmonic near-field enhancement. The simulated near-field distribution and experimental Raman scattering investigation support our results of plasmonic induced enhancement in solar cell performance. Our finding shows a great potential of incorporating the plasmonic effect with conventional device structure in achieving highly efficient polymer solar cells.
机译:通过将金纳米颗粒(NP)掺入连接两个子电池的互连层(ICL)中,我们证明了反向串联聚合物太阳能电池配置中的等离子体效应。实验结果表明,这种等离激元增强的ICL通过增强光吸收同时提高了顶部和底部子电池的效率。 Au NPs的存在不会导致串联电池内的电特性下降。结果,通过等离激元近场增强,Au NPs的光集中使功率转换效率提高了20%。模拟的近场分布和拉曼散射实验研究支持了我们等离激元诱导的太阳能电池性能增强的结果。我们的发现表明,在实现高效聚合物太阳能电池中,将等离子体效应与常规器件结构结合在一起具有巨大潜力。

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