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2-D Periodic and Random-on-Periodic Front Textures for Tandem Thin-Film Silicon Solar Cells

机译:串联薄膜硅太阳能电池的二维周期性和周期性随机前部纹理

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摘要

We evaluate the performance of thin-film silicon micromorph tandem solar cells deposited on transparent superstrates with embossed micrometer-scale 2-D gratings. Once coated with a thin conductive layer of hydrogenated indium oxide, the textured superstrates can be used as 2-D periodic single-texture front electrodes. Combining these almost loss-free front electrodes with a highly transparent, random self-textured zinc oxide layer (with a thickness ≤ 1 μm) deposited by low-pressure chemical vapor deposition (LPCVD), we obtain double-texture transparent front electrodes. The potential of both single- and double-texture front electrodes is estimated by varying the illumination spectrum of the solar simulator, thereby assessing the maximum efficiency of the tandem cells under optimal current-matching conditions. Our results demonstrate the complementary roles of the 2-D gratings and the LPCVD-ZnO layers in double textures: Cell efficiencies as high as with our state-of-the-art 2.3-μm-thick LPCVD-ZnO front electrode are obtained with significantly reduced ZnO layer thicknesses. Additionally, we show that equivalent efficiencies are also within reach with 2-D periodic single textures if the proper cell configuration is applied.
机译:我们评估浮雕的微米级二维光栅在透明覆板上沉积的薄膜硅微晶型串联太阳能电池的性能。一旦涂覆了氢化铟氧化物的薄导电层,纹理化的上层板就可以用作二维周期性单纹理前电极。将这些几乎无损耗的前电极与通过低压化学气相沉积(LPCVD)沉积的高度透明,无规自织构的氧化锌层(厚度≤1μm)相结合,我们获得了双纹理透明前电极。通过改变太阳能模拟器的照明光谱,可以估算单纹理和双纹理前电极的电势,从而在最佳电流匹配条件下评估串联电池的最大效率。我们的结果证明了二维光栅和LPCVD-ZnO层在双重纹理中的互补作用:获得了与我们最先进的2.3μm厚LPCVD-ZnO前电极一样高的电池效率,减少ZnO层的厚度。此外,我们证明,如果应用正确的单元格配置,则二维周期性单一纹理也可以达到等效的效率。

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