胡昉昊Fanghao HU
副教授,博士生導師
Tel: 86-10-62770448
Email: hufanghao@tsinghua.edu.cn
2008年畢業于武漢大學化學系,獲學士學位,2011年獲Iowa State University(愛荷華州立大學)碩士,2017年獲得Columbia University(哥倫比亞大學)化學系博士學位。2017-2019年于哥倫比亞大學化學系任博士后,2020年起任清華大學化學系副教授。研究方向為發展分子光譜,化學探針和非線性光學成像技術,及其在細胞活動、藥物作用機制和疾病診斷中的應用。在本領域重要期刊包括Science,Nat Methods,JACS,Angew Chem,Nat Commun等發表論文30余篇。獲得2016年國家優秀自費留學生獎學金特別優秀獎,2017年哥倫比亞大學化學系Hammett Award,和2019年國家海外高層次人才引進計劃青年項目資助。
Dr. Fanghao Hureceived his B.S. (2008) in Chemistry from Wuhan University, China, M.S. (2011) from Iowa State University, USA, and Ph.D. (2017) under the supervision of Professor Wei Min from Columbia University, USA. After a postdoctoral training (2017-2019) at Columbia, Dr. Hu joined the Department of Chemistry, Tsinghua University as an Associate Professor from 2020. His researchinterests includethe development and application of optical spectroscopy and imaging techniquesfor the study of cellular activities,mechanismsof drug action and disease diagnostics. His work has resulted in over 30 peer-reviewed publications. Dr. Hu received the Chinese Government Award for Outstanding Students Abroad (2016) and Hammett Award from Columbia Chemistry (2017).
代表性論文:
1.F. Hu#, and Lixue Shi#, and W. Min*, Biological imaging of chemical bonds by stimulated Raman scattering microscopy,Nat. Methods,2019, 16, 830-842.
2.K. T. Schiessl#,F. Hu#, J. Jo, S. Z. Nazia, B. Wang, A. Price-Whelan, W. Min* and L. E. P. Dietrich*, Phenazine production promotes antibiotic tolerance and metabolic heterogeneity inPseudomonas aeruginosabiofilms,Nat. Commun.,2019, 10, 762.
3.F. Hu#, C. Zeng#, R. Long, Y. Miao, L. Wei, Q. Xu, and W. Min*, Supermultiplexed optical imaging and barcoding with engineered polyynes,Nat. Methods,2018, 15, 194-200.
4.F. Hu, Z. Chen, L. Zhang, Y. Shen, L. Wei and W. Min*, Vibrational imaging of glucose uptake activity in live cells and tissues by stimulated Raman scattering,Angew. Chem. Int. Ed.,2015,54, 9821-9825.
5.F. Hu, W. Luo, and M. Hong*, Mechanisms of proton conduction and gating in influenza M2 proton channels from solid-state NMR,Science,2010, 330, 505-508.