In Situ Crosslinked Self‐Assembled Monolayer as Processing Stable Hole Selective Contact in Perovskite Solar Cells

L Lida Wang (Department of Materials Science and Engineering) Z Zhixin Liu (School of Physics and Optoelectronics) J Jiasheng Zou (Department of Materials Science and Engineering and Shenzhen Engineering Research and Development Center for Flexible Solar Cells Southern University of Science and Technology Shenzhen 518055 China) S Shichu Peng (Department of Materials Science and Engineering and Shenzhen Engineering Research and Development Center for Flexible Solar Cells Southern University of Science and Technology Shenzhen 518055 China) D Deng Wang (Department of Materials Science and Engineering) P Peide Zhu (Department of Materials Science and Engineering) Z Zhiwei Lei (Department of Materials Science and Engineering) X Xia Lei W Wenxuan Yang (Department of Materials Science and Engineering and Shenzhen Engineering Research and Development Center for Flexible Solar Cells Southern University of Science and Technology Shenzhen 518055 China) F Fei Su Y Yuqi Bao (Department of Materials Science and Engineering) W Wenbo Peng (Department of Materials Science and Engineering) S Siru He (Department of Materials Science and Engineering) J Jie Zeng (School of Chemistry & Chemical Engineering) Z Zonglong Song (Department of Materials Science and Engineering) X Xingzhu Wang (School of Physics and Optoelectronics) L Lei Yan (Department of Materials Science and Engineering) B Baomin Xu (Department of Materials Science and Engineering)

Abstract

Abstract Self‐assembled monolayers (SAMs) have demonstrated remarkable potential in advancing the efficiency and operational stability of p‐i‐n structured perovskite solar cells (PSCs) for scalable manufacturing. However, nonuniform surface coverage and weak interfacial adhesion of SAMs on substrates remain critical bottlenecks for further performance enhancement. The polar solvent processing steps during PSC device fabrication have been shown to induce desorption of weakly adsorbed SAM molecules. To address this, we developed a novel SAM material bearing in situ crosslinking moieties—4‐(5,9‐diallyl‐7 H ‐dibenzo[ c , g ]carbazol‐7‐yl)butyl phosphonic acid (4PADCB‐V)—which undergoes rapid polymerization upon UV irradiation. The crosslinked SAM (crs‐4PADCB‐V) retained structural integrity upon polar solvent exposure, mitigating interfacial defect formation while enhancing charge carrier transport properties and improving perovskite film crystallinity. Consequently, crs‐4PADCB‐V‐based devices achieved a champion power conversion efficiency (PCE) of 26.46% (certified efficiency of 25.96%) and retained 91% of initial efficiency after 1000 h of maximum power point (MPP) tracking under continuous illumination.

Article Details

Volume / Issue Vol. 64, Issue 52
Published December 22, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (18)

L

Lida Wang

Department of Materials Science and Engineering

Z

Zhixin Liu

School of Physics and Optoelectronics

J

Jiasheng Zou

Department of Materials Science and Engineering and Shenzhen Engineering Research and Development Center for Flexible Solar Cells Southern University of Science and Technology Shenzhen 518055 China

S

Shichu Peng

Department of Materials Science and Engineering and Shenzhen Engineering Research and Development Center for Flexible Solar Cells Southern University of Science and Technology Shenzhen 518055 China

D

Deng Wang

Department of Materials Science and Engineering

P

Peide Zhu

Department of Materials Science and Engineering

Z

Zhiwei Lei

Department of Materials Science and Engineering

X

Xia Lei

W

Wenxuan Yang

Department of Materials Science and Engineering and Shenzhen Engineering Research and Development Center for Flexible Solar Cells Southern University of Science and Technology Shenzhen 518055 China

F

Fei Su

Y

Yuqi Bao

Department of Materials Science and Engineering

W

Wenbo Peng

Department of Materials Science and Engineering

S

Siru He

Department of Materials Science and Engineering

J

Jie Zeng

School of Chemistry & Chemical Engineering

Z

Zonglong Song

Department of Materials Science and Engineering

X

Xingzhu Wang

School of Physics and Optoelectronics

L

Lei Yan

Department of Materials Science and Engineering

B

Baomin Xu

Department of Materials Science and Engineering