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A simulation study of thin film tandem solar cells with a nanoplate absorber bottom cell

机译:具有纳米板吸收器底部电池的薄膜串联太阳能电池的仿真研究

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摘要

A tandem thin film solar cell with a nanoplate absorber bottom cell that can solve the trade-off between light absorption and carrier transport in thin film solar cell is investigated. This structure has an n-type microcrystalline silicon nanoplate array on the substrate, and the p- and i-layers are sequentially grown along the surface of each n-type microcrystalline silicon nanoplate for bottom cell. After above bottom cell is fabricated, a similar process is used to fabricate an amorphous Si p-i-n top cell. High-aspect-ratio width/height nanoplates allow for the use of a material with sufficient thickness to obtain good optical absorption while simultaneously providing short collection lengths for excited carriers perpendicular to light absorption. The power conversion efficiency of nanoplate solar cells with 15,000 nm plate height is around 10%, which is an approximately 40% enhancement over a planar solar cell with a similar layer stack.
机译:研究了具有纳米板吸收器底部电池的串联薄膜太阳能电池,该电池可以解决薄膜太阳能电池中光吸收和载流子传输之间的折衷。该结构在基板上具有n型微晶硅纳米板阵列,并且p层和i层沿着每个用于底部电池的n型微晶硅纳米板的表面依次生长。在制造底部上方的电池之后,使用类似的工艺来制造非晶Si p-i-n顶部电池。高纵横比的宽度/高度纳米板允许使用具有足够厚度的材料以获得良好的光吸收,同时为垂直于光吸收的受激载流子提供较短的收集长度。具有15,000 nm板高的纳米板太阳能电池的功率转换效率约为10%,与具有类似层堆叠的平面太阳能电池相比,提高了约40%。

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