Degradation Mechanism and Stabilization Strategies for Large‐Area Perovskite Solar Modules

ABSTRACT Perovskite solar cells have achieved remarkable progress as the third‐generation photovoltaics (PVs), owing to their low manufacturing cost and high‐power conversion efficiency, and are now advancing toward industrialization. However, poor long‐term operational stability remains a key obstacle to their industrial commercialization. In particular, when scaling from millimeter‐scale devices to perovskite solar modules (PSMs), the increase in module dimensions, variations in fabrication processes, and the influence of practical operating conditions introduce a series of degradation mechanisms specific to PSMs. To provide a clear understanding of stability challenges at the module level, this review systematically summarizes the degradation mechanisms unique to PSMs. Starting from fundamental fabrication processes and operational principles, we comprehensively analyze degradation phenomena associated with uniform film formation, interconnection architecture, encapsulation design, and thermoelectrochemical stability. In addition, recent progress in mitigation strategies addressing these stability issues is summarized and organized. Finally, perspectives on future research directions in module stability are briefly discussed to provide practical guidance for developing reliable, durable, and commercially viable perovskite PV modules.

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Publication Details

Journal
Interdisciplinary materials
Published
2026-10-06
DOI
https://doi.org/10.1002/idm2.70092
Primary Topic
Perovskite Materials and Applications
Type
article
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article

Degradation Mechanism and Stabilization Strategies for Large‐Area Perovskite Solar Modules

Wanlin Guo, Jinzhan Cheng, Xiaoming Zhao, Xinzhu Li et al.
Interdisciplinary materials
Perovskite Materials and Applications
article

Degradation Mechanism and Stabilization Strategies for Large‐Area Perovskite Solar Modules

Wanlin Guo, Jinzhan Cheng, Xiaoming Zhao, Xinzhu Li, Xinyu Zhao, Xuezheng Liu, Peng Xu
article en

Abstract

ABSTRACT Perovskite solar cells have achieved remarkable progress as the third‐generation photovoltaics (PVs), owing to their low manufacturing cost and high‐power conversion efficiency, and are now advancing toward industrialization. However, poor long‐term operational stability remains a key obstacle to their industrial commercialization. In particular, when scaling from millimeter‐scale devices to perovskite solar modules (PSMs), the increase in module dimensions, variations in fabrication processes, and the influence of practical operating conditions introduce a series of degradation mechanisms specific to PSMs. To provide a clear understanding of stability challenges at the module level, this review systematically summarizes the degradation mechanisms unique to PSMs. Starting from fundamental fabrication processes and operational principles, we comprehensively analyze degradation phenomena associated with uniform film formation, interconnection architecture, encapsulation design, and thermoelectrochemical stability. In addition, recent progress in mitigation strategies addressing these stability issues is summarized and organized. Finally, perspectives on future research directions in module stability are briefly discussed to provide practical guidance for developing reliable, durable, and commercially viable perovskite PV modules.

Interdisciplinary materials
Nanjing University of Aeronautics and Astronautics (CN)
Openalex Percentile: Top 22%
Perovskite Materials and Applications
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Degradation Mechanism and Stabilization Strategies for Large‐Area Perovskite Solar Modules — Wanlin Guo, Jinzhan Cheng, et al. · Interdisciplinary materials (2026) | TGRS Research Map | TGRS