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将自组装单分子层与聚苯胺主链结合作为有机太阳能电池的空穴传输层。

Incorporation of Self-Assembled Monolayer with Polyaniline Backbone as Hole-Transporting Layer for Organic Solar Cells.

作者信息

Zhang Xin, Fan Baobing, Wang Ting, Tang Haoran, Liu Songtao, Wang Yining, Shao Lin, Zhang Jie, Cao Yong

机构信息

Institute of Polymer Optoelectronic Materials and Devices, State Key Laboratory of Luminescent Materials and Devices, South China University of Technology, Guangzhou, 510640, P. R. China.

出版信息

Macromol Rapid Commun. 2025 Jun;46(12):e2401145. doi: 10.1002/marc.202401145. Epub 2025 Mar 3.

Abstract

In addition to the heterojunction layer, the interfacial layers also determine the performance of organic solar cells (OSCs) owing to their great role in promoting the charge extraction. Herein, the study explores the use of rarely reported polyaniline (PANI)-derived polymers as self-assembled hole-transporting layer (HTL) in OSCs. It is observed that the tailoring of either spacer groups or polymerization sites can greatly affect the material aggregation and thus OSC performance. Specifically, the polymer with phenyl spacer (36-Ph-PANI) largely outperforms that with alkyl linkers, which is ascribed to the enhanced aspect ratio and dipole moment of the former molecule that contributes to the substrate coverage and hole extraction. Moreover, the linking of PANI with carbazole at 2,7-sites is much inferior than that at 3,6-positions, attributing to the higher hole mobility of the latter induced by the formation of radical cation. The combined merits of 36-Ph-PANI, including high transmittance, appropriate doping, and efficient charge extraction, enable a decent efficiency of 15.08% in OSCs. This work provides a subtle strategy for developing hole-transporting polymers that can self-assemble into monolayers, paving the way for more efficient and stable OSCs.

摘要

除了异质结层,界面层由于在促进电荷提取方面发挥着重要作用,也决定了有机太阳能电池(OSC)的性能。在此,该研究探索了使用鲜有报道的聚苯胺(PANI)衍生聚合物作为OSC中的自组装空穴传输层(HTL)。据观察,间隔基团或聚合位点的调整会极大地影响材料聚集,进而影响OSC性能。具体而言,带有苯基间隔基团的聚合物(36-Ph-PANI)在很大程度上优于带有烷基连接基团的聚合物,这归因于前者分子的长宽比和偶极矩增强,有助于覆盖基底和空穴提取。此外,PANI在2,7位与咔唑连接远不如在3,6位连接,这是由于后者形成自由基阳离子导致空穴迁移率更高。36-Ph-PANI的综合优点,包括高透光率、适当的掺杂和高效的电荷提取,使得OSC的效率达到了可观的15.08%。这项工作为开发能够自组装成单分子层的空穴传输聚合物提供了一种精妙策略,为更高效、稳定的OSC铺平了道路。

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