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有机卤化铵调节剂作为提高钙钛矿光伏性能的有效策略。

Organic Ammonium Halide Modulators as Effective Strategy for Enhanced Perovskite Photovoltaic Performance.

作者信息

Akin Seckin, Dong Bitao, Pfeifer Lukas, Liu Yuhang, Graetzel Michael, Hagfeldt Anders

机构信息

Department of Metallurgical and Materials Engineering Karamanoglu Mehmetbey University Karaman Turkey.

Laboratory of Photomolecular Science École Polytechnique Fédérale de Lausanne Station 6 Lausanne CH-1015 Switzerland.

出版信息

Adv Sci (Weinh). 2021 Mar 10;8(10):2004593. doi: 10.1002/advs.202004593. eCollection 2021 May.

Abstract

Despite rapid improvements in efficiency, long-term stability remains a challenge limiting the future up-scaling of perovskite solar cells (PSCs). Although several approaches have been developed to improve the stability of PSCs, applying ammonium passivation materials in bilayer configuration PSCs has drawn intensive research interest due to the potential of simultaneously improving long-term stability and boosting power conversion efficiency (PCE). This review focuses on the recent advances of improving n--p PSCs photovoltaic performance by employing ammonium halide-based molecular modulators. The first section briefly summarizes the challenges of perovskite materials by introducing the degradation mechanisms associated with the hygroscopic nature and ion migration issues. Then, recent reports regarding the roles of overlayers formed from ammonium-based passivation agents are discussed on the basis of ligand and halide effects. This includes both the formation of 2D perovskite films as well as purely organic passivating layers. Finally, the last section provides future perspectives on the use of organic ammonium halides within bilayer-architecture PSCs to improve the photovoltaic performances. Overall, this review provides a roadmap on current demands and future research directions of molecular modulators to address the critical limitations of PSCs, to mitigate the major barriers on the pathway toward future up-scaling applications.

摘要

尽管效率有了快速提高,但长期稳定性仍然是一个挑战,限制了钙钛矿太阳能电池(PSC)未来的扩大规模应用。尽管已经开发了几种方法来提高PSC的稳定性,但由于同时提高长期稳定性和提高功率转换效率(PCE)的潜力,在双层结构PSC中应用铵钝化材料引起了广泛的研究兴趣。本综述重点关注通过使用基于卤化铵的分子调节剂来提高n-p PSC光伏性能的最新进展。第一部分通过介绍与吸湿性和离子迁移问题相关的降解机制,简要总结了钙钛矿材料面临的挑战。然后,基于配体和卤化物效应,讨论了最近关于由铵基钝化剂形成的覆盖层作用的报告。这包括二维钙钛矿薄膜的形成以及纯有机钝化层。最后,最后一部分提供了关于在双层结构PSC中使用有机卤化铵以提高光伏性能的未来展望。总体而言,本综述提供了一份路线图,阐述了分子调节剂当前的需求和未来的研究方向,以解决PSC的关键局限性,减轻未来扩大规模应用道路上的主要障碍。

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