
教授/博导
办公室:化纤楼519
E-mail:xubowei@mail.buct.edu.cn
研究领域:
新型光电器件,尤其是有机光伏电池和钙钛矿光伏电池的电极界面层材料及修饰方法的研究。具体如下:
(1)新型光伏电池的电极修饰材料与方法研究,包括导电高分子的设计与合成、半导体材料光电特性与电荷注入、抽取和传输之间构效关系的研究
(2)大面积及柔性光伏电池制备技术,包括采用低成本的大面积涂布/印刷方法制备高效率、柔性、半透明电池
(3)新型光电器件的应用与器件整合,包括隔热玻璃、可穿戴织物电子器件、红外成像设备、无线供电设备
2003.09-2007.07 吉林大学,化学学院,理学学士
2007.09-2013.02 中科院长春应用化学研究所,理学博士2013.03-2014.04 西班牙巴斯克大学POLYMAT研究所,博士后
2014.07-2021.08 中国科学院化学研究所,助理研究员、副研究员
2021.09-至今 北京化工大学,教授长期从事有机光伏电池电极界面层的研究,发展出新型的正极和负极界面层材料,采用与实际生产方式完全兼容的涂布技术制备出兼具高效率和高稳定性的大面积光伏电池。以第一作者/通讯作者身份发表SCI论文60余篇,包括Angew. Chem. Int. Ed.(4篇)、Adv. Mater. (4篇)、J. Am. Chem. Soc.(1篇)、Joule (3篇)等,并应邀在Adv. Funct. Mater.、Adv. Energy Mater.上发表综述,论文他引4000 余次;授权中国发明专利4项;获得中科院青年创新促进会人才专项资助(2018年);承担科技部国家重点研发计划子课题(子课题负责人,343万)、基金委青年基金和面上项目(项目负责人);担任国际学术期刊National Science Open、SmartMat青年编委。
1. Y. Tong, K. Li, H. Liu, S. Wang, Q. Li, Z. Zhang, S. Yan, C. An*, B. Xu*, Aggregation-Induced Doping Enhancement Enabled by Non-Covalent Conformation Locking on Conjugated Polyelectrolyte Toward Efficient Hole Collection in Organic Solar Cells, Angew. Chem. Int. Ed. 2026,DOI: 10.1002/anie.1334595.
2.Y. Tong, H. Liu, W. Xiao, G. Jiang, S. Gong, Z. Wang, S. Yan, B. Xu*, Conjugated Polyelectrolyte with Long-Range Ordering and Compact Molecular Packing as Hole-Transporting Material for Efficient and Flexible Organic Solar Cells, Advanced Materials2025, 37, e09995.
3.Z. Li, Y. Xiang, J. Li, L. Feng, M. Zhang, Z. Zhang*, S. Yan, B. Xu*, Solution-processing induced H-aggregate of Perylene-Diimide Zwitterion Exhibiting Compact Molecular Stacking toward EfficientCathode Modification in Organic Solar Cells, Angew. Chem. Int. Ed. 2025, 64, e202413986.
4.Y. Tong, L. Feng, J. Li, H. Liu, C. An*, S. Yan,B. Xu*, Anode Engineering with pH-Neutral Conjugated Polyelectrolyte Enabling Over 19% Efficiency in Organic Solar Cells, Angew. Chem. Int. Ed. 2025, 64, e202504085.
5.J. Li, H. Wang, Y. Tong, Z. Li, Z. Wei, Y. Cheng, C. An,B. Xu*, Achieving High Doping Density in pH-neutral Conjugated Polyelectrolyte Toward Effective Hole-Transporting Materialsfor Organic Solar Cells, Advanced Materials 2024, 36, 2409885.
6.L. Feng#, Y. Xiang#, Z. Li, Q. Li, H. Dong, S. Yan, B. Xu*, J. Hou*, Non-Ionic Perylene-Diimide Polymer as Universal Cathode Interlayer for Conventional, Inverted, and Blade-Coated OrganicSolar Cells, Angew. Chem. Int. Ed. 2024, 63, e202410857.
7.Y. Yang,J. Wang,Y. Zu,Q. Liao,S. Zhang,Z. Zheng,B. Xu*, J. Hou*, Robust and hydrophobic interlayer material for efficient and highly stable organic solar cells, Joule2023, 7, 545-557.
8.Q. Liao, Q. Kang, Y. Yang, C. An, B. Xu*, J. Hou, Tailoring and Modifying an Organic Electron Acceptor toward the Cathode Interlayer for Highly Efficient Organic Solar Cells, Advanced Materials2020, 32, 1906557.
9.Q. Kang, B. Yang, Y. Xu, B. Xu*, J. Hou*, Printable MoOx Anode Interlayers for Organic Solar Cells, Advanced Materials, 2018, 30, 1801718.
10.Y. Cui, H. Yao, B. Gao, Y. Qin, S. Zhang, B. Yang, C. He, B. Xu*, J. Hou*, Fine-Tuned Photoactive and Interconnection Layers for Achieving over 13% Efficiency in a Fullerene-Free Tandem Organic Solar Cell, J. Am. Chem. Soc., 2017, 139, 7302-7309.