Volatile Additives Engineering: A Trustworthy Morphology Control Strategy in Non‐Fullerene Organic Solar Cells

Over the past few years, the efficiency of organic solar cells (OSCs) has significantly increased from about 15% to 21%. The morphology of the photoactive layer plays a critical role in performance improvement of OSCs. Therefore, numerous methods have been developed to optimize the morphology of the photoactive layer and unlock the full potential of the devices. Among them, volatile solid and solvent additives have attracted considerable attention due to their robust enhancement of efficiency and stability, coupled with a simple operational process. Here, the classification and development history of the volatile solid and solvent additives are comprehensively summarized, and the underlying mechanisms of morphology optimization are discussed. Additionally, a summary of volatile additive-induced improvements in interfacial layer performance is provided. Finally, the challenges and prospects for volatile additives are presented.

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Publication Details

Journal
Advanced Science
Published
2026-09-16
DOI
https://doi.org/10.1002/advs.77805
Primary Topic
Organic Electronics and Photovoltaics
Type
article
Field-Weighted Citation Impact
0.00

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article

Volatile Additives Engineering: A Trustworthy Morphology Control Strategy in Non‐Fullerene Organic Solar Cells

Zhiping Hu, Qiang Peng, Yuwei Duan, Jiang‐Ling Shi et al.
Advanced Science
Organic Electronics and Photovoltaics
article

Volatile Additives Engineering: A Trustworthy Morphology Control Strategy in Non‐Fullerene Organic Solar Cells

Zhiping Hu, Qiang Peng, Yuwei Duan, Jiang‐Ling Shi, Zheng Xiao, Jianqiang Qin, Zhiqin Lai, Juan Du
article en

Abstract

Over the past few years, the efficiency of organic solar cells (OSCs) has significantly increased from about 15% to 21%. The morphology of the photoactive layer plays a critical role in performance improvement of OSCs. Therefore, numerous methods have been developed to optimize the morphology of the photoactive layer and unlock the full potential of the devices. Among them, volatile solid and solvent additives have attracted considerable attention due to their robust enhancement of efficiency and stability, coupled with a simple operational process. Here, the classification and development history of the volatile solid and solvent additives are comprehensively summarized, and the underlying mechanisms of morphology optimization are discussed. Additionally, a summary of volatile additive-induced improvements in interfacial layer performance is provided. Finally, the challenges and prospects for volatile additives are presented.

Advanced Science
Chengdu University of Information Technology (CN), Chengdu University of Technology (CN), University of Chinese Academy of Sciences (CN)
National Natural Science Foundation of China
Industry, innovation and infrastructure
Openalex Percentile: Top 20%
Organic Electronics and Photovoltaics
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Volatile Additives Engineering: A Trustworthy Morphology Control Strategy in Non‐Fullerene Organic Solar Cells — Zhiping Hu, Qiang Peng, et al. · Advanced Science (2026) | TGRS Research Map | TGRS