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Ultrafast Transient Electroabsorption Illuminates Additive Effects for Enhancing Non-fullerene Photovoltaic Devices
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Ultrafast Transient Electroabsorption Illuminates Additive Effects for Enhancing Non-fullerene Photovoltaic Devices

Aditi Kumar, Bo-Han Chen, Chao-Yang Lin, Nikita A. Shumilov, Nathaniel J. L. K. Davis, Yu-Chiang Chao, Li-Kang Chu, Chia-Feng Li, Yu-Ching Huang, Shang-Da Yang, …
The journal of physical chemistry letters, 卷.16(41), 頁碼.10703-10711
16/10/2025
PMID: 41052939
Web of Science ID: WOS:001588879100001

摘要

Physical Insights into Light Interacting with Matter
Additives are crucial in optimizing organic photovoltaic (OPV) performance, yet their influence on intrinsic photophysical properties remains underexplored. Here we use sub-55 fs transient absorption spectroscopy to extract the transient electroabsorption (TEA) responsea sensitive and contactless probe of electronic couplingin Y6 films processed with 0.5% 1,8-diiodooctane (DIO) or 1-chloronaphthalene (CN). The DIO-treated film exhibits a primarily first-derivative-like signal, whereas the CN-treated film displays a second-derivative-like response, indicating enhanced delocalized charge transfer character and stronger core–core interactions. Additionally, the TEA rise time in CN-treated films is an order of magnitude shorter than in DIO-treated ones (0.2 ps vs 2 ps). Importantly, these TEA dynamics quantitatively mirror charge generation rates in PM6:Y6 blends, establishing TEA as a predictive metric of OPV performance. Our results uncover a direct nanomorphology–dynamics–function relationship and offer a powerful framework for rational additive design and selection in next-generation OPVs.

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