首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Efficient and flexible solar cells with improved stability through incorporation of a multifunctional small molecule at PEDOT:PSS/perovskite interface
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Efficient and flexible solar cells with improved stability through incorporation of a multifunctional small molecule at PEDOT:PSS/perovskite interface

机译:通过在PEDOT的多功能小分子结合掺入PSS / PEROVSKITE界面的多功能小分子,高效且柔性的太阳能电池具有改善的稳定性

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摘要

Inverted perovskite solar cells based on poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) have drawn great attention due to their potential for foldable photovoltaic applications. Modification of the interface of PEDOT:PSS and perovskite layer is one of the approaches for improving the efficiency and stability. Here, we introduce a triphenylamine-based small molecule, N,N'-Bis-(1-naphthalenyl)-N,N'-bis-phenyl-(1,1'-biphenyl)-4,4'-diamine (NPB), into the device as the multifunctional buffer layer. It is noted that the NPB buffer layer can obviously reduce the pinholes and defects of perovskite film, and adjust the energy level mismatch between perovskite and PEDOT:PSS layer. Moreover, the carrier recombination of NPB-modified device is restricted due to the reduced defects in perovskite layer and at PEDOT:PSS/perovskite interface. As a result, the device power conversion efficiency is improved from 15.4% to 18.4%. The flexible devices are further fabricated with the best efficiency of 14.4% without hysteresis. Most importantly, due to the superior moisture and UV-light resistance of NPB, the modified device exhibits excellent long-term stability under ambient atmosphere and UV-light soaking.
机译:基于聚(3,4-亚乙二氧基噻吩)的倒的钙钛矿太阳能电池:聚(苯乙烯磺酸盐)(PEDOT:PSS)由于其折叠光伏应用而受到极大的关注。修改PEDOT接口:PSS和PEROVSKITE层是提高效率和稳定性的方法之一。在此,我们介绍了一种基于三苯胺的小分子,N,N'-Bis-(1-萘基)-N,N'-Bis-苯基 - (1,1'-Biphylyl)-4,4'-二胺(NPB ),进入设备作为多功能缓冲层。注意,NPB缓冲层可以明显减少钙钛矿薄膜的针孔和缺陷,并调节Perovskite和PEDOT之间的能量水平不匹配:PSS层。此外,由于钙钛矿层和PEDOT:PSS / PEROVSKITE接口的缺陷,NPB改性装置的载体重组受到限制。结果,设备电力转换效率从15.4%提高到18.4%。柔性器件进一步制造,效率最佳为14.4%而无滞后。最重要的是,由于NPB的卓越的水分和紫外线性,改性装置在环境气氛和UV光浸泡下表现出优异的长期稳定性。

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