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Improving Performance of Organic-Silicon Heterojunction Solar Cells Based on Textured Surface via Acid Processing

机译:通过酸处理改善基于纹理表面的有机硅异质结太阳能电池的性能

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摘要

Poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) is widely applied in organic-photoelectronic devices due to its excellent transparency and conductivity. However, when it is used in the organic-silicon heterojunction solar cells with traditional pyramid texturing surface, the device performance is limited by the contact between the PEDOT:PSS and silicon wafer at the bottom of the pyramids. We optimized the structure of the bottom of the pyramids via acid isotropic etching (AIE) method with mixed acid solution to ensure that the silicon wafer is fully covered by the PEDOT:PSS. In addition, hydrogenated amorphous silicon thin films were deposited with PEVCD method as the passivation and back surface field (BSF) layer to decrease the rear surface recombination rate, thus increasing the long wavelength response. Finally, a power conversion efficiency of 13.78% was achieved after depositing MoO3 on the front of the device as the antireflection layer.
机译:聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)由于其优异的透明性和导电性而被广泛应用于有机光电器件中。但是,当将其用于具有传统金字塔结构表面的有机硅异质结太阳能电池时,器件性能受到PEDOT:PSS与金字塔底部硅晶片之间接触的限制。我们使用混合酸溶液通过酸各向同性蚀刻(AIE)方法优化了金字塔底部的结构,以确保PEDOT:PSS完全覆盖硅晶片。此外,采用PEVCD方法沉积氢化非晶硅薄膜作为钝化和背面场(BSF)层,以降低背面复合率,从而增加长波长响应。最终,在将MoO3沉积在器件正面作为抗反射层之后,功率转换效率达到了13.78%。

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