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  5. Realizing Uniform Defect Passivation via Self‐Polymerization of Benzenesulfonate Molecules in Perovskite Photovoltaics

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Article
en
2025

Realizing Uniform Defect Passivation via Self‐Polymerization of Benzenesulfonate Molecules in Perovskite Photovoltaics

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en
2025
Vol 37 (29)
Vol. 37
DOI: 10.1002/adma.202503435

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Michael Graetzel
Michael Graetzel

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Guangyue Yang
Yanfeng Yin
Kaiwen Dong
+10 more

Abstract

Realizing high-quality perovskite films through uniform defect passivation and crystallization control is pivotal to unlocking the potential of scalable applications. However, prevalent small-molecule additives are inherently susceptible to the crystallization dynamics of perovskites, resulting in non-uniform distribution within the crystalline film and impeding consistent passivation and precise crystallization control. While polymers offer improved uniformity, their poor solubility restricts practical applications. To overcome this limitation, an in situ self-polymerization strategy is employed, enabling homogeneous coordination between sulfonate-containing additives and undercoordinated lead cations. This approach enhances perovskite film quality, promotes larger crystalline grain domains, and facilitates more efficient charge transport across grain domain boundaries. As a result, perovskite solar cells (PSCs) achieve a remarkable power conversion efficiency of 25.34% in small-area devices and 21.54% in 14.0 cm2 mini-modules, accompanied by exceptional operational stability. These findings highlight in situ polymerization as an effective strategy for leveraging sulfonate additives to overcome distribution challenges, advancing the scalable fabrication of efficient and stable PSCs.

How to cite this publication

Guangyue Yang, Yanfeng Yin, Kaiwen Dong, Bingqian Zhang, Li Zhu, Likai Zheng, Haiyuan Wang, Mingyang Wei, Wenming Tian, Xiaoqing Jiang, Shuping Pang, Michael Graetzel, Xin Guo (2025). Realizing Uniform Defect Passivation via Self‐Polymerization of Benzenesulfonate Molecules in Perovskite Photovoltaics. , 37(29), DOI: https://doi.org/10.1002/adma.202503435.

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Publication Details

Type

Article

Year

2025

Authors

13

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1002/adma.202503435

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