严锋
近期热点
资料介绍
个人简历
Dr Feng Yan received PhD degree in physics from Nanjing University in 1997. Soon afterwards, he became an assistant professor and then an associate professor at Physics Department of Nanjing University. During that period, he worked on ferroelectric thin films, relaxor ferroelectrics and C60. From Feb 2001 to Sep 2005, Dr Yan worked at Engineering Department (Electrical Engineering) of Cambridge University as a Senior Research Associate being in close collaboration with Seiko Epson Corporation (Japanese company). In Cambridge, Dr Yan worked on poly-Si TFT, single-grain TFT, organic TFT and biosensors. After a short stay at Physics Department of Imperial College London, Dr Yan became a permanent staff ¾ Higher Research Scientist, at National Physical Laboratory in UK. His work during this period was mainly focusing on the fabrication and characterization of organic TFTs. Then Dr Yan joined Applied Physics Department of The Hong Kong Polytechnic University as an assistant professor in September 2006.\r\rEDUCATION\r1994–1997, Department of Physics, Nanjing University, Nanjing, China\rPh.D., My PhD work was carried out in the group of Prof. Yening Wang. The research subject is “The electrical and mechanical properties and the phase transitions of C60 crystal”.\r1992–1994, Department of Physics, Nanjing University, Nanjing, China\rMaster. My research work was carried out in the group of Prof. Yening Wang. I had studied the dielectric properties and the grain size effect of polycrystalline C60.\r1988–1992, Department of Physics, Nanjing University, Nanjing, China\rI got my BSc degree in the field of “condensed matter physics”.研究领域
"""""Solar cells (organic & perovskite)\rOrganic electronics (OTFT; OECT);\rTFTs for flat-panel displays and biosensors;\rMetal oxide TFTs;\rhigh-k polymer;"近期论文
Ultrafast, sensitive and portable detection of COVID-19 IgG using flexible organic electrochemical transistors, H. Liu, A. Yang, J. Song, N. X. Wang, P. Lam, Y. Li, H. K.-W. Law, Feng Yan*, Science Advances 7, eabg8387 (2021).\r\r2D materials for conducting holes from grain boundaries in perovskite solar cells, P You, G Tang, J Cao, D Shen, TW Ng, Z Hawash, N Wang, CK Liu, W Lu, Q. Tai, Y. Qi, C.-S. Lee, Feng Yan*. Light: Science & Applications 10 (1), 1-12 (2021).\r\rRecent progress in tin-based perovskite solar cells, J Cao, Feng Yan*, Energy & Environmental Science 14 (3), 1286-1325, (2021).\r\rUltrafast laser-annealing of perovskite films for efficient perovskite solar cells, Peng You, Guijun Li, Guanqi Tang, Jiupeng Cao, Feng Yan*, Energy Environ. Sci. DOI: 10.1039/C9EE02324K (2020).\r\rAntioxidant grain passivation for air stable tin‐based perovskite solar cells, Q Tai, X Guo, G Tang, P You, TW Ng, D Shen, J Cao, CK Liu, N Wang, Ye Zhu, Chun-Sing Lee, Feng YAN*, Angew. Chem.-Int. Edit. 58, 806-810 (2019). \r\rFunctionalized Organic Thin Film Transistors for Biosensing, Naixiang Wang, Anneng Yang, Ying Fu, Yuanzhe Li, and Feng Yan*, Acc. Chem. Res. 52 (2), 277–287 ( 2019). \r\rRecent Progress of Inorganic Perovskite Solar Cells, Q Tai, T Kai-Chi, Feng Yan*, Energy Environ. Sci. 12, 2375-2405 (2019).\r\rSolution‐Phase Epitaxial Growth of Perovskite Films on 2D Material Flakes for High‐Performance Solar Cells, G Tang, P You, Q Tai, A Yang, J Cao, F Zheng, Z Zhou, J Zhao, PKL Chan, F. Yan*, Adv. Mater. 31, 1807689 (2019).\r\rFabric Organic Electrochemical Transistors for Biosensors, A. N. Yang, Y. Z. Li, C. X. Yang, Y. Fu, N. X. Wang, L. Li,* F. Yan*, Adv. Mater. 30, 1800051 (2018).\r\rEmerging Semitransparent Solar Cells: Materials and Device Design, Q. D. Tai and F. Yan*, Adv. Mater. 29, 1700192 (2017).\r\rConjugated Polymer for Voltage-Controlled Release of Molecules, S. H. Liu, Y. Fu, G. J. Li, L. Li, H. K. W. LAW, X. F. Chen, F. Yan*, Adv. Mater. 29, 1701733 (2017).\r\rHighly Sensitive Detection of Protein Biomarkers with Organic Electrochemical Transistors, Ying Fu, Naixiang Wang, Anneng Yang, Helen Ka-wai LAW, Li Li, Feng Yan*, Adv. Mater. 29, 1703787 (2017).\r\rBlack phosphorus quantum dots for boosting light harvesting in organic photovoltaics, S. H. Liu, S. H. Lin, P. You, C. Surya, S. P. Lau*, F. Yan*, Angew. Chem.-Int. Edit. 56, 13717-13721 (2017). \r\rUltrasensitive Broadband Phototransistors Based on Perovskite/Organic-Semiconductor Vertical Heterojunctions, C Xie, P You, Z Liu, L Li, F Yan*, Light: Science & Applications 6, e17023 (2017).\r\rPhotodetectors based on two-dimensional layered materials beyond graphene, Chao Xie, Chunhin Mak, Xiaoming Tao, Feng Yan*, Adv. Funct. Mater. 27 (19), 1603886 (2017).\r\rEfficient and stable perovskite solar cells prepared in ambient air irrespective of the humidity, Q. D. Tai, P. You, H. Q. Sang, Z. K. Liu, C. L. Hu, H. L.W. Chan and Feng Yan*, Nature Comm. 7, 11105 (2016).\r\rAu/Ag Core-Shell Nanocuboids for High-Efficiency Organic Solar Cells with Broadband Plasmonic Enhancement, Shenghua Liu, Ruibin Jiang, Peng You, Xingzhong Zhu, Jianfang Wang, and Feng Yan*, Energy Environ. Sci. 9, 898-905 (2016).\r\rFlexible Organic Electrochemical Transistors for Highly Selective Enzyme Biosensors and Used for Saliva Testing, Caizhi Liao, Chunhin Mak, Meng Zhang, Helen L.W. Chan and Feng Yan*, Adv. Mater. 27, 676-681 (2015).\r\rFlexible Organic Electronics in Biology: Materials and Devices, Caizhi Liao, Meng Zhang, Mei Yu Yao, Tao Hua, Li Li, Feng Yan*, Adv. Mater. 27, 7493-7527 (2015). (Most Accessed in 11/2014 & 1/2016 in Adv. Mater.)\r\rEfficient Semitransparent Perovskite Solar Cells with Graphene Electrodes, Peng You, Zhike Liu, Qidong Tai, Shenghua Liu, Feng Yan*, Adv. Mater. 27, 3632-3638 (2015). (Most Accessed in 6/2015 in Adv. Mater.) 相关热点
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