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用于高效稳定的铅锡钙钛矿和串联太阳能电池的多功能硅杂环戊二烯空穴传输层

Multi-Functional Silole Hole Transport Layer for Efficient and Stable Lead-Tin Perovskite and Tandem Solar Cells.

作者信息

Cai Yuanjing, Maxwell Aidan, Li Chongwen, Jung Eui Dae, Zeng Lewei, Kumral Boran, Serles Peter, Tan Zhan'ao, Yu Runnan, Boccia Salvatore, Chen Mingxing, Jiang Cheng, Chen Dongcheng, Liu Yanjiang, Wang Zaiwei, Grater Luke

机构信息

Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, P. R. China.

The Edward S. Rogers Department of Electrical and Computer Engineering, University of Toronto, Toronto, Ontario, M5S 3G4, Canada.

出版信息

Adv Mater. 2024 Nov;36(46):e2411968. doi: 10.1002/adma.202411968. Epub 2024 Sep 23.

Abstract

Despite high theoretical efficiencies and rapid improvements in performance, high-efficiency ≈1.2 eV mixed Sn-Pb perovskite solar cells (PSCs) generally rely on poly(3,4-ethylenedioxythiophene) polystyrenesulfonate (PEDOT: PSS) as the hole transport layer (HTL); a material that is considered to be a bottleneck for long-term stability due to its acidity and hygroscopic nature. Seeking to replace PEDOT: PSS with an alternative HTL with improved atmospheric and thermal stability, herein, a silole derivative (Silole-COOH) tuned with optimal electronic properties and efficient carrier transport by incorporating a carboxyl functional group is designed, which results in an optimal band alignment for hole extraction from Sn-Pb perovskites and robust air and thermal stability. Thin films composed of the Silole-COOH exhibit superior conductivity and carrier mobility compared to PEDOT: PSS, in addition to reduced nonradiative quasi-Fermi-level splitting losses at the HTL/perovskite interface and improved quality of Sn-Pb perovskite. Replacement of PEDOT: PSS with Silole-COOH leads to 23.2%-efficient single-junction Sn-Pb PSCs, 25.8%-efficient all-perovskite tandems, and long operating stability in ambient air.

摘要

尽管理论效率很高且性能迅速提升,但高效(≈1.2 eV)的混合锡铅钙钛矿太阳能电池(PSC)通常依赖聚(3,4-乙撑二氧噻吩)聚苯乙烯磺酸盐(PEDOT:PSS)作为空穴传输层(HTL);由于其酸性和吸湿性,这种材料被认为是长期稳定性的瓶颈。本文旨在用一种具有改善的大气和热稳定性的替代HTL取代PEDOT:PSS,设计了一种通过引入羧基官能团来调节电子性能并实现高效载流子传输的硅杂环戊二烯衍生物(Silole-COOH),这为从锡铅钙钛矿中提取空穴产生了最佳的能带排列,并具有强大的空气和热稳定性。与PEDOT:PSS相比,由Silole-COOH组成的薄膜表现出优异的导电性和载流子迁移率,此外,HTL/钙钛矿界面处的非辐射准费米能级分裂损失降低,锡铅钙钛矿的质量也得到改善。用Silole-COOH取代PEDOT:PSS可得到效率为23.2%的单结锡铅PSC、效率为25.8%的全钙钛矿叠层电池,并在环境空气中具有长期运行稳定性。

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