个人资料
教育经历1997.09-2001.07,武汉大学,学士学位 工作经历2006.09-2008.09,瑞典Umea大学物理系,博士后 2011.01-2019.04,中国科学院宁波材料技术与工程研究所,中科院百人计划研究员 2019.06-2025.06,Bsports必一体育纳光电集成与先进装备教育部工程研究中心 主任 2025.07-至今, Bsports必一体育副院长 个人简介方俊锋,教授,博士生导师,国家杰青/中组部青年拔尖/中科院百人/中科院特聘研究员。在SCI学术期刊发表论文160余篇,SCI他引10000余次,其中以第一/通讯作者在Science、Nat.Photonics.、Joule、Sci.Adv.、Nat.Commun.、J.Am.Chem.Soc.、Angew.Chem.Int.Ed.、Adv.Mater.、Energy.Environ.Sci.、Adv.Energy.Mater.、Adv.Funct.Mater.、Nano.Lett 、ACS Energy.Lett.等SCI杂志发表论文130余篇,第一和通讯作者论文多次被国际著名学者在Science、Nat.Photonics、Joule、Chem.Rev、Chem.Soc.Rev、Acc. Chem. Res.、J.Am.Chem.Soc.、Angew.Chem.Int.Ed.、Adv.Mater.、Energy Environ. Sci.等借鉴、大篇幅详细介绍或专门作为亮点工作点评(Science论文被Joule专文亮点点评并评价为反型电池方向的重要里程碑,JACS论文被Angew.Chem.Int.Ed转文亮点评论和高度评价),授权PCT专利2项,中国专利18项。已培养博士/硕士研究生40余名,学生多次获得中科院院长奖(2次)、国家奖学金等各类奖励。主持国家杰出青年基金和面上项目(7项)、国家中组部青年拔尖人才、国家重点研发计划课题、中科院前沿科学重点研发计划、中科院百人计划、中科院特聘研究员计划、浙江省杰青和海外高层次引进特聘专家、中央高校优秀青年团队等国家和省部级项目10余项。美国、欧盟、波兰基金和人才项目函评专家,国家中组部、科技部、教育部和基金委等项目函/会评专家,国家自然科学奖/上海市科技奖会评评审专家。多次在EMRS、PIERS、ACS、中国化学会和材料学会等做邀请报告。上海市真空学会理事,中国激光杂志社青年编委,《表面技术》杂志青年编委。 社会兼职中国激光杂志社青年编委,《表面技术》青年编委,上海真空学会理事,Bsports必一体育实验室建设与管理委员会委员。 科技部、教育部、中科院、基金委和其他省市科研项目/人才项目函评/会评专家。 国家自然科学奖/上海市科技奖等会评专家。 美国NSF、欧盟、波兰基金评审专家,欧盟ERC项目评审专家。 Science、Nature、Nat.Mater.、Nat.Photonics.、Nat.Nanotech、Nat.Energy、Nat.Commun、Joule、J.Am.Chem.Soc.、Angew.Chem.Int.Ed.、Energy Environ. Sci.、Adv.Mater等国际期刊审稿人或仲裁人。 研究方向钙钛矿太阳能电池界面材料与器件性能调控, 钙钛矿太阳能电池稳定性与机制, 高效反型钙钛矿太阳能电池及叠层电池 招生与培养开授课程1.太阳能电池材料与应用 2.物理化学 3.热学 科研项目部分国家和省部级项目
学术成果在SCI学术期刊发表论文160余篇,SCI他引10000余次,其中以第一/通讯作者在Science、Nat.Photonics.、Sci.Adv.、Nat.Commun.、Joule、J.Am.Chem.Soc.、Angew.Chem.Int.Ed.、Adv.Mater..等SCI杂志发表论文130余篇,第一和通讯作者论文多次被国际著名学者在Science、Nat.Photonics、Joule、Chem.Rev、Chem.Soc.Rev、Acc. Chem. Res.、J.Am.Chem.Soc.、Angew.Chem.Int.Ed.、Adv.Mater.、Energy Environ. Sci.等借鉴、大篇幅详细介绍或专门作为亮点工作点评(Science论文被Joule专文亮点点评并评价为反型电池方向的important milestone),授权PCT专利2项,中国专利18项。 部分论文: 1. Yuan, H. B.; Li, X. D.; Zhang, W. X.; Hu, Y. Y.; Xu, J. H.; You, T. Y.; Weng, Q.; Mao, Y. J.; Shu, T.; Fang, J. F., Efficient Sn-Pb Perovskite Solar Cells Through Inhibiting Hole Accumulation. Adv Mater 2025,37 (30). 2. Li, Y. F.; Sun, N. N.; Jiang, X. X.; Fu, S.; Chen, H.; Feng, B.; Weng, Q.; Guo, X. M.; Cui, Z. B.; Li, W.; Zhu, X. T.; Zhang, W. X.; Li, X. D.; Vasenko, A. S.; Fang, J. F. , Surface Halide Inversion Mitigates Voltage Losses in Wide-Bandgap Perovskite for Efficient Tandem. Angew Chem Int Edit 2025. 3. Fu, S.; Sun, N. N.; Hu, S. F.; Chen, H.; Jiang, X. X.; Li, Y. F.; Zhu, X. T.; Guo, X. M.; Zhang, W. X.; Li, X. D.; Vasenko, A. S.; Fang, J. F. , molecular compensation in wide-bandgap perovskites for efficient all-perovskite tandem solar cells. Energ Environ Sci 2025,18 (11), 5503-5510. 4. Fu, S.; Sun, N. N.; Chen, H.; Li, Y.; Li, Y. F.; Zhu, X. T.; Feng, B.; Guo, X. M.; Yao, C. L.; Zhang, W. X.; Li, X. D.; Fang, J. F. , Homogenizing SAM deposition seeding -OH groups for scalable fabrication of perovskite solar cells. Energ Environ Sci 2025,18 (7), 3305-3312. 5. Feng, B.; Li, W.; Cui, Z. B.; Li, Y. F.; He, W. T.; Fu, S.; Zhang, W. X.; Li, X. D.; Fang, J. F. , ITO Nanoparticles to Stabilize the Self-Assembly of Hole Transport Layer in Inverted Perovskite Solar Cells. Adv Mater 2025. 6. Cui, Z. B.; Li, W.; Feng, B.; Li, Y. F.; Sun, N. N.; Zhang, W. X.; Fu, S.; Li, X. D.; Fang, J. F. , Thickness-insensitive polymeric hole-transporting for efficient inverted solar cells. Joule 2025,9 (7). 7. Zhu, X. T.; Jiang, X. X.; Fu, S.; Weng, Q.; Li, Y. F.; Sun, N. N.; Liu, J. Y.; Feng, B.; Zhang, W. X.; Liu, X. H.; Li, X. D.; Vasenko, A. S.; Fang, J. F. , Rational Electrostatic Iodine Regulation for Photothermally Stable Perovskite Solar Cells. Adv Energy Mater 2025. 8. Zhao, J. J.; Zeng, K.; Dou, W. T.; Zhao, X. L.; Wang, W.; Shi, X. L.; Li, X. D.; Fang, J. F. ; Qian, X. H.; Yang, H. B.; Xu, L., Boosted Circularly Polarized Luminescence of a Chiral Metallacage Through Co-Assembly in Confined Microfluidic Environments. Adv Funct Mater 2025,35 (3). 9. Zhao, J. J.; Dou, W. T.; Cui, W. D.; Shi, X. L.; Li, X. D.; Fang, J. F.; Qian, X. H.; Yang, H. B.; Xu, L., Chiroptical Signal Inversion of Peptido-Coassemblies in Confined Parallel-Laminar Microfluidics. Angew Chem Int Ed 2025,64 (27). 10. Wu, Y.; Li, W.; Li, S. Z.; Niu, Y.-.; Wang, C. H.; Yang, H.-.; Zhao, X.-.; Li, X. D.; Fang, J. F. ; Shi, X. L., Supramolecular Macrocyclic Iodine Adsorbents Enable Photothermally Stable Perovskite Solar Cells. Adv Sci 2025. 11. Shu, T.; Zhang, W. X.; Guo, X. M.; Xu, J. H.; Mao, Y. J.; Liu, J.; Yuan, H. B.; Fu, S.; Li, X. D.; Ou-Yang, W.; Fang, J. F. , Organosulfide-Halide Perovskite Heterojunction Enables Electron Transport Layer-Free CsPbI Perovskite Solar Cells. Acs Energy Lett 2025,10 (8), 3834-3840. 12. Guo, X. M.; Zhang, W. X.; Yuan, H. B.; Cui, Z. B.; Li, W.; Shu, T.; Li, Y. F.; Feng, B.; Hu, Y. Y.; Li, X. D.; Fang, J. F. , Low-Temperature Processed CsPbI for Flexible Perovskite Solar Cells Through Cs―I bond Weakening. Adv Energy Mater 2025,15 (12). 13. Zhang, W. X.; Guo, X. M.; Cui, Z. B.; Yuan, H. B.; Li, Y. F.; Li, W.; Li, X. D.; Fang, J. F. , Strategies for Improving Efficiency and Stability of Inverted Perovskite Solar Cells. Adv Mater 2024,36 (37). 14. Yang, H.; Cui, Z. B.; Li, W.; Guo, X. M.; Lu, C. Y.; Yuan, H. B.; Hu, Y. Y.; Zhang, W. X.; Li, X. D.; Fang, J. F. , Functionalized 2D/3D Heterojunction with Reversible Iodine-Alkenes Reaction in Perovskite Solar Cells. Adv Funct Mater 2024,34 (46). 15. Liu, A. C.; Li, X. D.; Zhang, W. X.; Yang, H.; Guo, X. M.; Lu, C. Y.; Yuan, H. B.; Ou-Yang, W.; Fang, J. F. , Ag Electrode Anticorrosion in Inverted Perovskite Solar Cells. Adv Funct Mater 2024,34 (1). 16. Guo, X. M.; Lu, C. Y.; Zhang, W. X.; Yuan, H. B.; Yang, H.; Liu, A. C.; Cui, Z. B.; Li, W.; Hu, Y. Y.; Li, X. D.; Fang, J. F. , In Situ Surface Sulfidation of CsPbI for Inverted Perovskite Solar Cells. Acs Energy Lett 2024,9 (1), 329-335. 18. Cui, Z. B.; Li, W.; Feng, B.; Li, Y. F.; Guo, X. M.; Yuan, H. B.; Weng, Q.; You, T. Y.; Zhang, W. X.; Li, X. D.; Fang, J. F. , Substrate Induced p-n Transition for Inverted Perovskite Solar Cells. Adv Mater 2024,36 (41). 19. Zhang, W. X.; Yuan, H. B.; Li, X. D.; Guo, X. M.; Lu, C. Y.; Liu, A. C.; Yang, H.; Xu, L.; Shi, X. L.; Fang, Z. W.; Yang, H. B.; Cheng, Y.; Fang, J. F. , Component Distribution Regulation in Sn-Pb Perovskite Solar Cells through Selective Molecular Interaction. Adv Mater 2023,35 (39). 2303674 20. Yang, H.; Li, X. D.; Guo, X. M.; Lu, C. Y.; Yuan, H. B.; Liu, A.; Zhang, W. X.; Fang, J. F. , Enhancing the Stability of Perovskite Solar Cells through an Iodine Confining Strategy. Acs Energy Lett 2023,8 (9), 3793-3799. 21. Wu, M. X.; Li, Y. T.; Liu, P. P.; Shi, X. S.; Kang, H.; Zhao, X. L.; Xu, L.; Li, X. D.; Fang, J. F. ; Fang, Z. W.; Cheng, Y.; Yu, H. K.; Shi, X. L.; Yang, H. B., Functionalization of Pentacene: A Facile and Versatile Approach to Contorted Polycyclic Aromatic Hydrocarbons. Angew Chem Int Edit 2023,62 (42). 22. Li, X. D.; Yang, H.; Liu, A. C.; Lu, C. Y.; Yuan, H. B.; Zhang, W. X.; Fang, J. F. , Iodine-trapping strategy for light-heat stable inverted perovskite solar cells under ISOS protocols. Energ Environ Sci 2023,16 (12), 6071-6077. 23. Sheng Fu, Jiabo Le, Xueming Guo, Nannan Sun, Wenxiao Zhang, Weijie Song, and Junfeng Fang ; Polishing the Lead-Poor Surface for Efficient Inverted CsPbI3 Perovskite Solar Cells, Adv. Mater., 2022, 2205066 24. Li, Xiaodong; Zhang, Wenxiao; Guo, Xuemin; Lu, Chunyan; Wei, Jiyao; Fang, Junfeng ; Constructing heterojunctions by surface sulfidation for efficient inverted perovskite solar cells, Science, 2022, 375(6579): 434-437 25. Fu, Sheng; Li, Xiaodong; Wan, Juanyong; Zhang, Wenxiao; Song, Weijie; Fang, Junfeng ; In Situ Stabilized CsPbI3 for Air-Fabricated Inverted Inorganic Perovskite Photovoltaics with Wide Humidity Operating Window, Advanced Functional Materials, 2022, 32, 2111116 26. Zhang, Wenxiao; Li, Xiaodong; Fu, Sheng; Zhao, Xiaoyan; Feng, Xiuxiu; Fang, Junfeng ; Lead-lean and MA-free perovskite solar cells with an efficiency over 20%, Joule, 2021, 5(11): 2904-2914 27. Fu, Sheng; Zhang, Wenxiao; Li, Xiaodong; Guan, Jianming; Song, Weijie; Fang, Junfeng ; Humidity-Assisted Chlorination with Solid Protection Strategy for Efficient Air-Fabricated Inverted CsPbI3 Perovskite Solar Cells, ACS Energy Letters, 2021, 6(10): 3661-3668 28. Li, X. D.; Fu, S.; Zhang, W. X.; Ke, S.Z.; Song, W. J.; Fang, J. F. , Chemical Anti-corrosion Strategy for Stable Inverted Perovskite Solar Cells. Sci. Adv. 2020. 6(51): eabd158 29. Fu, S.; Wan, L.; Zhang, W. X.; Li, X. D.;Song, W. J.; Fang, J. F. , Tailoring In-situ Healing and Stabilizing Post-treatment Agent for High-performance Inverted CsPbI3 Perovskite Solar Cells with Efficiency of 16.67%. ACS Energy Letters 2020, 5, 3314 30. Fu, S.; Zhang, W. X.; Li, X. D.; Wan, L.; Wu, Y. L.; Chen. L. J; Liu, X. H.; Fang, J.F. , Dual-Protection Strategy for High-Efficiency and Stable CsPbI2Br Inorganic Perovskite Solar Cells. ACS Energy Letters 2020, 5, 676-684 31. Fu, S.; Li, X. D.;Wan, L.;Wu, Y. L.;Zhang, W. X.;Wang, Y. M.;Bao, Q. Y.; Fang, J.F. , Efficient Passivation with Lead Pyridine-2-Carboxylic for High-Performance and Stable Perovskite Solar Cells. Adv Energy Mater 2019, 9 (35). 32. Yin, X. J.;Liu, X. H.;Peng, Y. H.;Zeng, W. X.;Zhong, C.;Xie, G. H.;Wang, L.;Fang, J. F. ; Yang, C. L., Multichannel Strategies to Produce Stabilized Azaphenalene Diradicals: A Predictable Model to Generate Self-Doped Cathode Interfacial Layers for Organic Photovoltaics. Adv Funct Mater 2019, 29 (4). 33. Li, X. D.; Zhang, W. X.; Wang, Y. C.; Zhang, W. J.; Wang, H. Q.; Fang, J. F. In-Situ Cross-linking Strategy for Efficient and Operationally Stable Methylammoniun Lead Iodide Solar Cells. Nat Commun 2018, 9, 3806. 34. Li, X. D.; Fu, S.;Liu, S. Y.;Wu, Y. L.;Zhang, W. X.;Song, W. J.; Fang, J. F. , Suppressing the ions-induced degradation for operationally stable perovskite solar cells. Nano Energy 2019, 64. 35. Li, X. D.; Zhang, W. X.;Zhang, W. J.;Wang, H. Q.; Fang, J. F. , Spontaneous grain polymerization for efficient and stable perovskite solar cells. Nano Energy 2019, 58, 825-833. 36. Li, X. D.; Zhang, W.J.; Usman, K.; Fang, J. F. Small Molecule Interlayers in Organic Solar Cells. Adv Energy Mater 2018, 8, 1702730. 37. Li, D.; Xiao, Z.; Wang, S.Z.; Geng, X.J.; Yang, S. F.;Fang, J. F. ; Yang, H. and Ding, L. M.. A Thieno[3,2-c]Isoquinolin-5(4H)-One Building Block for Effcient Thick-Film Solar Cells. Adv. Energy Mater. 2018, 1800397 38. Zhang, W.;Wang, Y. C.; Chang,Li, X. D.; Song, C.J.; Wan, L.; Usman. L.; Fang, J. F. Recent Advance in Solution-Processed Organic Interlayers for High Performance Planar Perovskite Solar Cells Advanced Science 2018, 1800159 39. Wang, Y. C.; Chang,J.W.; Zhu,L.P.;Li, X. D.;Song, C.J.; Fang, J. Electron Transport Layer Assisted Crystallization of Perovskite Films for High Efficiency Planar Heterojunction Solar Cells. Adv Funct Mater 2017, 28, 1706317. 40. Wang, Y; Li, X.; Zhu, L.; Liu, X.; Zhang, W.; Fang, J. F. .: Efficient and Hysteresis-Free Perovskite Solar Cells Based on a Solution Processable Polar Fullerene Electron Transport Layer. Advanced Energy Materials 2017, 7. 1701144. 41. Liu, X; Wang, H-Q;Li, Y; Gui, Z; Ming, S; Usman, K; Zhang, W;Fang, J. F. : Regular Organic Solar Cells with Efficiency over 10% and Promoted Stability by Ligand- and Thermal Annealing-Free Al-Doped ZnO Cathode Interlayer. Advanced Science 2017, 1700053 42. X. Liu, X. Li, Y. Li, C. Song, L. Zhu, W. Zhang, H. Q. Wang, Fang, J. F. , High-Performance Polymer Solar Cells with PCE of 10.42% via Al-Doped ZnO Cathode Interlayer. Adv Mater 2016, 28, 7405-7412. 43. C. Kuang, G. Tang, T. Jiu, H. Yang, H. Liu, B. Li, W. Luo, X. Li, W. Zhang, F. Lu, Fang, J. F. , Y. Li, Highly Efficient Electron Transport Obtained by Doping PCBM with Graphdiyne in Planar-Heterojunction Perovskite Solar Cells. Nano Letters 2015, 15, 2756-2762. 44. W. Zhang, Y. Wu, Q. Bao, F. Gao, Fang, J. F. , Morphological Control for Highly Efficient Inverted Polymer Solar Cells Via the Backbone Design of Cathode Interlayer Materials. Advanced Energy Materials 2014, 4, 1400359. 45. C. Min, C. Shi, W. Zhang, T. Jiu, J. Chen, D. Ma, Fang, J. F. , A Small-Molecule Zwitterionic Electrolyte without a π-Delocalized Unit as a Charge-Injection Layer for High-Performance PLEDs. Angewandte Chemie International Edition 2013, 52, 3417–3420. 46. Fang, J. F., B. H. Wallikewitz, F. Gao, G. Tu, C. Müller, G. Pace, R. H. Friend, W. T. S. Huck, Conjugated Zwitterionic Polyelectrolyte as the Charge Injection Layer for High-Performance Polymer Light-Emitting Diodes. Journal of the American Chemical Society 2011, 133, 683-685. 47. Fang, J. F., P. Matyba, L. Edman, The Design and Realization of Flexible, Long-Lived Light-Emitting Electrochemical Cells. Advanced Functional Materials 2009, 19, 2671-2676. 48. Fang, J. F., P. Matyba, N. D. Robinson, L. Edman, Identifying and Alleviating Electrochemical Side-Reactions in Light-Emitting Electrochemical Cells. Journal of the American Chemical Society 2008, 130, 4562-4568.
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