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Enhancing Output Power of Textured Silicon Solar Cells by Embedding Indium Plasmonic Nanoparticles in Layers within Antireflective Coating

机译:通过将抗反射涂层中的层中的铟等离子体纳米颗粒嵌入铟血浆纳米颗粒来增强纹理硅太阳能电池的输出功率

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摘要

In this study, we sought to enhance the output power and conversion efficiency of textured silicon solar cells by layering two-dimensional indium nanoparticles (In NPs) within a double-layer (SiNx/SiO2) antireflective coating (ARC) to induce plasmonic forward scattering. The plasmonic effects were characterized using Raman scattering, absorbance spectra, optical reflectance, and external quantum efficiency. We compared the optical and electrical performance of cells with and without single layers and double layers of In NPs. The conversion efficiency of the cell with a double layer of In NPs (16.97%) was higher than that of the cell with a single layer of In NPs (16.61%) and greatly exceeded that of the cell without In NPs (16.16%). We also conducted a comprehensive study on the light-trapping performance of the textured silicon solar cells with and without layers of In NPs within the double layer of ARC at angles from 0° to 75°. The total electrical output power of cells under air mass (AM) 1.5 G illumination was calculated. The application of a double layer of In NPs enabled an impressive 53.42% improvement in electrical output power (compared to the cell without NPs) thanks to the effects of plasmonic forward scattering.
机译:在这项研究中,我们试图通过双层(氮化硅/二氧化硅)抗反射涂层(ARC)内分层二维铟纳米颗粒(在NPS)以诱导电浆前向散射来增强纹理化的硅太阳能电池的输出功率与变换效率。使用拉曼散射,吸收光谱,光反射率,和外部量子效率的等离子体效应进行了表征。我们比较了有和没有单层和在NP的双层细胞的光学和电学性能。与在纳米颗粒(16.97%)的双层电池的转换效率比用在纳米颗粒(16.61%)的单层细胞的更高,并大大超过了没有在纳米颗粒(16.16%)的细胞。我们还进行了对纹理的硅太阳能电池的光俘获性能有和没有在角度从0 ARC的双层°〜75°的范围内。在NP的层的全面研究。空气质量下的细胞的总的电输出功率(AM)1.5克照明计算。在NP的一个双层的应用程序启用在电输出功率令人印象深刻的53.42%的改善(相比于没有纳米颗粒的小区)由于等离子体激元前向散射的影响。

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