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聚乙烯亚胺高能亲水表面界面处理实现高效稳定的钙钛矿太阳能电池。

Polyethyleneimine High-Energy Hydrophilic Surface Interfacial Treatment toward Efficient and Stable Perovskite Solar Cells.

机构信息

State Centre for International Cooperation on Designer Low-Carbon and Environmental Material (SCICDLCEM), School of Materials Science and Engineering, Zhengzhou University , Zhengzhou 450001, P. R. China.

Key Laboratory of Green Printing Institute of Chemistry, Chinese Academy of Sciences (ICCAS), Beijing Engineering Research Centre of Nanomaterials for Green Printing Technology, Beijing National Laboratory for Molecular Sciences (BNLMS) , Beijing 10090, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2016 Nov 30;8(47):32574-32580. doi: 10.1021/acsami.6b09063. Epub 2016 Nov 18.

Abstract

The interfacial contact is critical for the performance of perovskite solar cells (PSCs), leading to dense perovskite thin films and efficient charge transport. In this contribution, an effective interfacial treatment solution using polyethyleneimine (PEI) was developed to improve the performance and stability of PSCs. Inserting PEI between the s-VO and perovskite layers can produce a high-energy hydrophilic surface to facilitate the formation of a high-quality perovskite layer by the solution method. Accordingly, the surface coverage of perovskite film on the s-VO layer increased from 80% to 95%, and the PCE of the device improved from 12.06% (with an average of 10.16%) to 14.4% (with an average value of 12.8%) under an irradiance of 100 mW cm AM 1.5G sunlight. More importantly, the stability of PSCs was further improved after adding another PEI layer between the electron transport layer and LiF/Al layer, less than 10% decay in efficiency during a 10-days observation. Since all layers of the PSCs were fabricated at low temperature (<150 °C), these PEI-treated PSCs based on the amorphous VO layer have the potential to contribute significantly toward the development of efficient and stable solar cells on flexible substrates.

摘要

界面接触对于钙钛矿太阳能电池(PSCs)的性能至关重要,它可以形成致密的钙钛矿薄膜并促进有效的电荷传输。在本研究中,开发了一种使用聚乙烯亚胺(PEI)的有效界面处理溶液,以提高 PSCs 的性能和稳定性。将 PEI 插入 s-VO 和钙钛矿层之间可以产生高能亲水性表面,从而通过溶液法更容易地形成高质量的钙钛矿层。因此,钙钛矿薄膜在 s-VO 层上的表面覆盖率从 80%增加到 95%,器件的 PCE 从 100 mW cm AM 1.5G 阳光照射下的 12.06%(平均值为 10.16%)提高到 14.4%(平均值为 12.8%)。更重要的是,在电子传输层和 LiF/Al 层之间添加另一层 PEI 后,PSC 的稳定性进一步提高,在 10 天的观察期间效率衰减不到 10%。由于 PSCs 的所有层都在低温(<150°C)下制造,因此基于非晶 VO 层的这些经过 PEI 处理的 PSCs 有可能为在柔性基板上开发高效稳定的太阳能电池做出重大贡献。

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