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Ultrathin solar cells with Ag meta-material nanostructure for light absorption enhancement

机译:具有银超材料纳米结构的超薄太阳能电池,可增强光吸收

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摘要

The two major problems of conventional photovoltaic devices are their low conversion efficiencies and relatively high production cost. Lately, ultrathin film photovoltaics have been proposed to overcome the mentioned issues. However, the thin film solar cells have some weaknesses, and the main deficiency is their low light absorption, which is related to the reduced absorber thickness. Therefore, light management plans are needed for ultrathin solar cells to enhance their light absorption. Using plasmonic and more specifically the meta-material structures is one of the efficient techniques to manage and trap the incident light inside the active region of photovoltaics. Here, we have proposed an ultrathin Si solar cell with embedded meta-material nanostripes in which their positions were swept in x and z directions to acquire the optimum performance. The results show that the designed structure gives rise to 154.8% light absorption enhancement and 189.5% short-circuit current density enhancement over the solar spectrum compared to the reference conventional structure.
机译:常规光伏器件的两个主要问题是它们的低转换效率和相对较高的生产成本。最近,已经提出了超薄膜光伏技术来克服上述问题。但是,薄膜太阳能电池有一些缺点,主要缺点是吸光率低,这与吸收体厚度的减小有关。因此,超薄太阳能电池需要光管理计划以增强其光吸收。使用等离子体并且更具体地使用超材料结构是管理和将入射光捕获在光伏器件的有源区内的有效技术之一。在这里,我们提出了一种带有嵌入式超材料纳米带的超薄硅太阳能电池,其位置沿x和z方向扫掠以获得最佳性能。结果表明,与参考常规结构相比,该设计结构在太阳光谱范围内提高了154.8%的光吸收增强和189.5%的短路电流密度增强。

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