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Enhancing the hydrophobicity of perovskite solar cells using C18 capped CH3NH3PbI3 nanocrystals

机译:使用C18封端的CH3NH3PBI3纳米晶体增强钙钛矿太阳能电池的疏水性

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摘要

An important limitation in the commercialisation of perovskite solar cells is lack of stability towards moisture due to fast degradation of the absorber perovskite layer. One approach to improve the stability is effective interface engineering by adding materials that can protect the underlying perovskite film. In this work, we look at the incorporation of C18 capped CH3NH3PbI3 nanocrystals (MAPI NCs) in perovskite solar cells with both standard and inverted architecture. Three different solution-processing techniques were investigated and compared. We show that solar cells with MAPI NCs integrated at the perovskite-Spiro interface can reach over 10% efficiency. The presence of long chain ligands bound to the MAPI NCs does not appear to damage hole extraction. Most importantly, the hydrophobicity of the surface is significantly enhanced, leading to a much higher device stability towards moisture.
机译:由于吸收剂钙钛矿层的快速降解,钙钛矿太阳能电池商业化的重要局限性缺乏对水分的稳定性。 一种提高稳定性的方法是通过添加可以保护底层钙钛矿膜的材料是有效的界面工程。 在这项工作中,我们通过标准和倒置架构研究C18封端的CH3NH3PBI3纳米纳米纳米纳米纳米纳米晶体(MAPI NCS)。 研究了三种不同的解决方案加工技术并进行比较。 我们展示了在Perovskite-Spiro接口上集成MAPI NC的太阳能电池可以达到超过10%的效率。 与MAPI NC结合的长链配体的存在似乎没有损伤孔提取。 最重要的是,表面的疏水性显着提高,导致对水分的稳定性更高。

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