论著发表

1.   Zeng, H.; Hu, C.; Wu, D.; Xia, J., Boosting the PhotovoltaicPerformance and Thermal Stability of Organic Solar Cells via an InsulatingFluoropolymer Additive. Chempluschem 2022, 87 (7).


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2.    Yan, B.; Wang, X.; Hu, C.; Wu, D.; Xia, J., Asymmetrical andsymmetrical naphthalene monoimide fused perylene diimide acceptors for organicsolar cells. Tetrahedron 2022, ‍116.

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3.   Wang, L.; Shen, H.; You, X.; Wu, D.; Xia, J., The Synthesis ofAsymmetric Perylene Diimide Acceptors and Their Optoelectronic PropertiesStudies. European Journal of Organic Chemistry 2022, (3).


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4.   Wang, K.; Shao, G.; Peng, S.; You, X.; Chen, X.; Xu, J.; Huang,H.; Wang, H.; Wu, D.; Xia, J., Achieving Symmetry-Breaking Charge Separation inPerylenediimide Trimers: The Effect of Bridge Resonance. Journal of Physical Chemistry B 2022, 126 (20), 3758-3767.


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5.   Shen, H.; Hu, T.; Huang, H.; Wu, D.; Xia, J.,Promoting the photovoltaic performance and stability of organic solar cells byimidazole-doped PEDOT:PSS. Journal of Materials Science-Materials in Electronics 2022,33 (15), 12083-12092.


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6.   Shao, G.; Wu, M.; Wang, X.; Zhao, J.; You,X.; Wu, D.; Xia, J., Regiochemically Pure 1,6-Ditriflato-Perylene Diimide:Preparation and Transformation. Journalof Organic Chemistry 2022, 87 (21), 14825-14832.


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7.   Liao, Y.; Wang, L.; Shen, H.; You, X.; Wu,D.; Xia, J., Structural symmetry-breaking of a perylene diimide acceptor at theN-position for enhanced photovoltaic performance. New Journal of Chemistry 2022, 46 (20), 9851-9857.



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8.   Chen, L.; Hu, Y.; Huang, H.; Liu, C.; Zang,Y.; Wu, D.; Xia, J., Femtosecond Laser-Assisted Device Engineering: TowardOrganic Field-Effect Transistor-Based High-Performance Gas Sensors. Acs Applied Materials & Interfaces 2022.


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