Molecular insights of exceptionally photostable electron acceptors for organic photovoltaics

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作者
Zhi-Xi Liu
Zhi-Peng Yu
Ziqiu Shen
Chengliang He
Tsz-Ki Lau
Zeng Chen
Haiming Zhu
Xinhui Lu
Zengqi Xie
Hongzheng Chen
Chang-Zhi Li
机构
[1] Zhejiang University,State Key Laboratory of Silicon Materials, MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering
[2] The Chinese University of Hong Kong,Department of Physics
[3] New Territories,Department of Chemistry
[4] Zhejiang University,State Key Laboratory of Luminescent Materials and Devices, School of Materials Science and Engineering
[5] South China University of Technology,Institutes of Physical Science and Information Technology
[6] Anhui University,undefined
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Photo-degradation of organic semiconductors remains as an obstacle preventing their durable practice in optoelectronics. Herein, we disclose that volume-conserving photoisomerization of a unique series of acceptor-donor-acceptor (A-D-A) non-fullerene acceptors (NFAs) acts as a surrogate towards their subsequent photochemical reaction. Among A-D-A NFAs with fused, semi-fused and non-fused backbones, fully non-fused PTIC, representing one of rare existing samples, exhibits not only excellent photochemical tolerance in aerobic condition, but also efficient performance in solar cells. Along with a series of in-depth investigations, we identify that the structural confinement to inhibit photoisomerization of these unique A-D-A NFAs from molecular level to macroscopic condensed solid helps enhancing the photochemical stabilities of molecules, as well as the corresponding OSCs. Although other reasons associating with the photostabilities of molecules and devices should not excluded, we believe this work provides helpful structure-property information toward new design of stable and efficient photovoltaic molecules and solar cells.
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