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High-Efficiency Silicon/Organic Heterojunction Solar Cells with Improved Junction Quality and Interface Passivation

机译:具有改进的结质量和界面钝化的高效硅/有机异质结太阳能电池

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摘要

Silicon/organic heterojunction solar cells (HSCs) based on conjugated polymers, poly(3,4-ethylene-dioxythiophene):poly(styrenesulfonate) (PEDOT:PSS), and n-type silicon (n-Si) have attracted wide attention due to their potential advantages of high efficiency and low cost. However, the state-of-the-art efficiencies are still far from satisfactory due to the inferior junction quality. Here, facile treatments were applied by pretreating the n-Si wafer in tetramethylammonium hydroxide (TMAH) solution and using a capping copper iodide (CuI) layer on the PEDOT:PSS layer to achieve a high-quality Schottky junction. Detailed photoelectric characteristics indicated that the surface recombination was greatly suppressed after TMAH pretreatment, which increased the thickness of the interfacial oxide layer. Furthermore, the CuI capping layer induced a strong inversion layer near the n-Si surface, resulting in an excellent field effect passivation. With the collaborative improvements in the interface chemical and electrical passivation, a competitive open-circuit voltage of 0.656 V and a high fill factor of 78.1% were achieved, leading to a stable efficiency of over 14.3% for the planar n-Si/PEDOT:PSS HSCs. Our findings suggest promising strategies to further exploit the full voltage as well as efficiency potentials for Si/organic solar cells.
机译:基于共轭聚合物,聚(3,4-乙烯-二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)和n型硅(n-Si)的硅/有机异质结太阳能电池(HSC)已引起广泛关注发挥其高效率和低成本的潜在优势。但是,由于结点质量较差,最新的效率仍远远不能令人满意。在这里,通过在氢氧化四甲铵(TMAH)溶液中预处理n-Si晶片并在PEDOT:PSS层上使用覆盖的碘化铜(CuI)层来实现高质量的肖特基结,来进行便捷的处理。详细的光电特性表明,TMAH预处理后,表面重组被大大抑制,这增加了界面氧化物层的厚度。此外,CuI覆盖层在n-Si表面附近引起了强的反型层,从而导致了优异的场效应钝化。通过在界面化学和电气钝化方面的共同改进,实现了具有竞争力的0.656 V开路电压和78.1%的高填充因子,从而使平面n-Si / PEDOT的稳定效率超过14.3%: PSS HSC。我们的发现表明,有希望的策略可以进一步开发硅/有机太阳能电池的全电压以及效率潜力。

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