近年来代表性学术论著(作者、论文题目、期刊名称、发表时间、期卷页码) [1] Q. Zhou, C. Liu, J. Li, R. Xie, G. Zhang, Z. Zhang, L. Zhang, J. Chen, X. Gong, C. Yang, Y. Wang, Y. Liu, X. Liu.*.Materials Horizons, 2023, DOI:10.1039/D3MH01143G. IF= 13. [2]X. Liu, C. L. Anderson, Y. Liu.* p-Azaquinodimethane: a Versatile Quinoidal Moiety for Functional Materials Discovery. Accounts of Chemical Research, 2023, 56, 1669.IF= 25. [3] T. Wang, Q. Yang, Y. Chen, Q. Peng, X. Qi,* H. Shen, X. Liu,*S. Li, H. Yu, Y. Shen, M. Wang,* X. Gong.*Stitching Perovskite Grains with Perhydropoly(Silazane) Anti-Template-Agent for High-Efficiency and Stable Solar Cells Fabricated in Ambient Air. Energy & Environmental Materials, 2023, 6, e12554.IF= 15. [4] H. Liang, C. Liu, Z. Zhang, X. Liu,* Q. Zhou, G. Zheng, X. Gong, L. Xie, C. Yang, L. Zhang, B. He, J. Chen,* Y. Liu*. Unravelling the Role of Electron Acceptors for the Universal Enhancement of Charge Transport in Quinoid-Donor-Acceptor Polymers for High-Performance Transistors. Advanced Functional Materials, 2022, 2201903. IF= 20. [5] C. Liu, X. Liu*, G. Zheng, X. Gong, C. Yang, H. Liu, L. Zhang, C. L. Anderson, B. He, L. Xie, R. Zheng, H. Liang, Q. Zhou, Z. Zhang, J. Chen,* Y. Liu.* Unprecedented quinoid-donor-acceptor strategy to boost carrier mobilities of semiconducting polymers for organic field-effect transistors. Journal of Materials Chemistry A, 2021, 9, 23497. IF= 15. [6]. F. Pan#, M. Luo#,X. Liu#, H. Jiang, Z. Wang, D. Yuan, Q. Wang, L. Qing, Z. Zhang, L. Zhang, Y. Zou, J. Chen.* Binary non-fullerene-based polymer solar cells with a 430 nm thick active layer showing 15.39% efficiency and 73.38% fill factor. Journal of Materials Chemistry A, 2021, 9,7129. IF= 15. [7].X. Liu, B. He, C. L. Anderson, J. Kang, T. Chen, J. Chen, S. Feng, L. Zhang, M.A. Kolaczkowski, S. J. Teat, M. A. Brady, C. Zhu, L. Wang, J. Chen,* Y. Liu.* para-Azaquinodimethane: a Compact Quinodimethane Variant as a Variant Stable Building Block for High Performance Low Band Gap Polymers, Journal of the American Chemical Society, 2017, 139, 8355-8363. IF= 16. [8]. X. Liu, B. He, A. G. Ruiz, A. Navarro, T. Chen, M.A. Kolaczkowski, S. Feng, L. Zhang, C. L. Anderson, J. Chen,* Y. Liu.* Unravelling the Main Chain and Side Chain Effects on Thin Film Morphology and Charge Transport in Quinoidal Conjugated Polymers. Advanced Functional Materials, 2018, 1801874. IF= 20. [9]. X. Liu, L. Nian, K. Gao, L. Zhang, L. Qing, Z. Wang, L. Ying, Z. Xie,* Y. Ma, Y. Cao, F. Liu,* J. Chen.* Low band gap conjugated polymers combining siloxane-terminated side chains and alkyl side chains: side-chain engineering achieving a large active layer processing window for PCE > 10% in polymer solar cells, Journal of Materials Chemistry A, 2017, 5, 17619-17631. IF= 15. [10]. Z. Wang#, X. Liu #, H. Jiang#, X. Zhou, L. Zhang, F. Pan, X. Qiao, D. Ma, W. Ma, L. Ding, Y. Cao, J. Chen.* Organic Solar Cells Based on High Hole Mobility Conjugated Polymer and Nonfullerene Acceptor with Comparable Bandgaps and Suitable Energy Level Offsets Showing Significant Suppression of Jsc–Voc Trade-Off, Solar RRL, 2019, 1900079. IF= 9. [11]. X. Liu, P. Cai, J. Chen, Y. Cao. D-A copolymers based on 6,7-Difluoroquinoxaline: synthesis and polymer solar cells, Polymer Materials Science and Engineering, 2014, 30(2), 1-6.(邀请稿, 徐僖院士纪念专刊首篇文章) |