Use of Aluminum-Silica Core-Shell Plasmonic Nanoparticles to Enhance the Opto-Electronic Performance of Thin-Film Solar Cells

Sabrina Nurhan Hasan, A. J. Haque, T. A. Khan, M. Chowdhury
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Abstract

This computational study highlights the relevance of aluminum nanoparticles (NPs) in improving the opto-electronic performance of thin-film solar cells. Due to its high chemical reactivity and optical absorption in the ultra-violet range, aluminum nanoparticles are not typically used in applications to improve solar cell performance, despite its attractive optical properties. Therefore, aluminum nanoparticles were coated with a thin silica shell layer that resulted in shifting the absorption properties of aluminum nanoparticles to longer wavelengths, and also aided in chemical isolation of the highly reactive aluminum nanoparticle core. The absorbing substrate of silicon thin-film solar cells were then modified with various sizes of aluminum nanoparticles with varied shell thicknesses that were placed on top of the silicon substrate and also embedded inside it. Furthermore, the nanoparticles were also placed in a “sandwich” configuration, with one particle on top of the substrate and another embedded inside it. The results showed that Al-silica core-shell nanoparticles in a “sandwich” configuration demonstrated the most improved opto-electronic performance of solar cells when compared to the other configurations studied. The results underline the feasibility of using aluminum-silica core-shell nanoparticles to significantly enhance the opto-electronic properties of thin-film solar cells.
利用铝-硅核-壳等离子体纳米粒子增强薄膜太阳能电池的光电性能
这项计算研究强调了铝纳米颗粒(NPs)在改善薄膜太阳能电池光电性能方面的相关性。由于其在紫外线范围内的高化学反应性和光学吸收,铝纳米颗粒通常不用于改善太阳能电池性能的应用,尽管它具有吸引人的光学特性。因此,铝纳米颗粒被涂上一层薄薄的二氧化硅外壳层,导致铝纳米颗粒的吸收特性转移到更长的波长,也有助于化学隔离高活性的铝纳米颗粒核心。然后用不同尺寸的铝纳米粒子修饰硅薄膜太阳能电池的吸收基板,这些铝纳米粒子具有不同的外壳厚度,被放置在硅基板的顶部并嵌入其中。此外,纳米颗粒也被放置在“三明治”结构中,一个颗粒在衬底上,另一个颗粒嵌入衬底内。结果表明,与其他结构相比,“三明治”结构的al -二氧化硅核壳纳米颗粒的光电性能得到了最大的改善。这些结果强调了使用铝-硅核-壳纳米颗粒显著提高薄膜太阳能电池光电性能的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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