CdTe太阳能电池背接触寄生吸收的研究

Joshua Smay, Ola Rashwan, James Then, Darien Perez
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摘要

薄膜太阳能电池(TFSC)与传统的晶圆太阳能电池板的不同之处在于,它们的厚度是传统太阳能电池板的一小部分,因此它们具有降低材料成本,更轻的重量和可能的灵活性。为了提高其光捕获和吸收效率,制造商目前使用纳米级纹理。当在衬底配置中制造纳米纹理薄膜太阳能电池时,背面反射器也具有纹理。已经观察到,在硅太阳能电池中,有纹理的背反射器会导致寄生光吸收。这种情况降低了后反射器的有效性,从而降低了吸收层的吸收和总体效率。然而,对于薄膜(CdTe/CdS)太阳能电池器件,几乎没有类似的研究。本文利用ANSYS ANSOFT高频结构模拟器(HFSS)对金属后反射面有纳米纹理和没有纳米纹理的CdTe/CdS薄膜太阳能电池进行了波光学分析。光学分析得出了四种吸收剂厚度范围在250- 1000 nm之间的单位电池的吸收百分比,在360 - 860 nm的6个波长范围内,有或没有纹理背反射器,有3种不同的背接触金属(Au, Ag和Al)。在红外范围内,织构后触点显示出活性CdTe层吸收的显著增加。此外,后反射器纹理也增加了金属后反射层的寄生吸收,特别是超薄吸收层。研究还发现,当主动吸收体厚度增加到500 nm、750 nm或1000 nm时,由纹理背反射器引起的额外寄生吸收对吸收的影响较小。最后,银(Ag)作为背触点的性能优于铝(Al)和金(Au)。这一发现对太阳能电池制造商来说可能是至关重要的,因为它可能是一个被忽视的因素,在相对较薄的电池中实现更高的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Parasitic Absorption in Back Contact of CdTe Solar Cells
Thin film solar cells (TFSC) differ from the conventional wafer solar cell panels in that they are a fraction of the thickness, hence they boast reduced material costs, lighter weight, and possible flexibility. To improve their light-trapping and absorption efficiency, manufacturers currently use nanometer scale texturing. When manufacturing nano textured thin film solar cells in the substrate configuration, the back reflector is also textured. It has been observed that a textured back reflector leads to parasitic light absorption in silicon solar cells. This occurrence reduces the back reflector effectiveness, and thus reduces absorption in the absorber layer and overall efficiency. However, there is little to no similar research done for thin film (CdTe/CdS) solar cells devices. In this work, wave optical analyses of thin film CdTe/CdS solar cells with and without nano texturing on the metal back reflectors were simulated using ANSYS ANSOFT High Frequency Structural Simulator (HFSS). The optical analyses yielded percentage absorptions for unit cells with four absorber thicknesses range between 250- to 1000 nm, with and without a textured back reflector over six wavelengths range from 360nm to 860 nm, and with 3 different back contact metals (Au, Ag, and Al). It was noted that the textured back contacts show a substantial increase in the absorption in the active CdTe layer in the infrared range. Additionally, back reflector texturing increases the parasitic absorption in the metal back reflector layer as well, especially with ultrathin absorber layer. It was also found that additional parasitic absorption due to a textured back reflector has less of an impact on absorption as the active absorber thickness increases to 500 nm, 750 nm, or 1000 nm. Finally, silver (Ag) as back contact outperforms both aluminum (Al) and gold (Au). This finding might be crucial to solar cell manufacturers because it could possibly be an overlooked factor in achieving higher efficiencies for relatively thin cells.
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