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董振超  教授

 
Name:  Zhen-Chao DONG (董振超)
Born:    January , 1964, Anxi, Fujian, China
Address: University of Science and Technology of China
96 Jinzhai Road, Hefei 230026, P. R. China
Tel: 86-(0)551-63600103
Fax: 86-(0)551-63606266
E-mail:
Homepage:
zcdong@ustc.edu.cn
http://www.hfnl.ustc.edu.cn/2010/0407/350.html
 
相关链接:
  招生信息——单分子光电子学研究组简介
  挑战化学成像极限:中国科大实现单分子拉曼光谱成像
  Nature News: Two techniques unite to provide molecular detail
  Nature | News & Views: Techniques: Optical spectroscopy goes intramolecular
  Chemical and Engineering News (June 10, CEN, USA): Raman Imaging Breaks The Nanometer Barrier
  Physics today (USA): Optical spectroscopy goes subnanometer
  Chemistry World (UK): Raman scattering reaches sub-nm resolution
  Microscopy and Analysis (Wiley): STM and Raman scattering map single molecules
  Ars technica (USA): New method can image single molecule, identify its atoms
  Basque Research (Spain): Seeing inside a molecule using light
  The Conversation (UK & Australia): New method can image single molecules and identify its atoms
  Phys.Org (UK): Researchers use Raman spectroscopy and STM to allow chemical mapping of molecules to 1nm resolution
  NBC (USA): Now, a way to peer inside individual molecules
  纳米等离激元光子学研究取得新进展
  我校“实现最高分辨率单分子拉曼成像”成果入选2013年度中国十大科技进展
 
EDUCATION
92.03-95.12 Postdoctoral Research Associate, Iowa State University, Ames Laboratory, USA
87.04-90.12 Ph.D., Fujian Institute of Research on the Structure of Matter, CAS, China
83.09-87.03 M.S., Xiamen University
79.09-83.06 B.S., Sichuan University
 
RESEARCH EXPERIENCE
04.04- Professor, Hefei National Laboratory for Physical Sciences at Microscale
University of Science and Technology of China (USTC)
96.01-04.03 Senior Researcher, Sub-Theme Leader
Nanodevice Group, National Institute for Materials Science (NIMS), Tsukuba, Japan
92.03-95.12 Postdoctoral Research Associate
Ames Laboratory-DOE, Iowa State University, Ames, USA
87.04-92.03 Research Assistant (1987-1990); Assistant Professor (1990-1992)
Fujian Institute of Research on the Structure of Matter, CAS,Fuzhou, China
 
CURRENT RESEARCH INTERESTS
 • Single-molecule optoelectronics by STM
 • Single-molecule electroluminescence/Electrically driven single-photon sources
 • Single-molecule Raman scattering
 • Single-molecule plasmonics/Nano-photonics
 • Nanocale chemical identification of bio-molecules on surfaces
 • Plasmon-exciton coupling and energy transfer at the nanoscale
 
CURRENT RESEARCH PROJECTS
 • "Optical characterization of nanostructures with ultrahigh spatial resolution”, MOST, 2016-2021, PI;
 • "Developing comprehensive measurement systems for single-molecule optoelectronics”, NNSF, 2014-2018, PI;
 • "Nanoscale chemical identification of single bio-molecules on surfaces”, NNSF, 2014-2018, PI.
 
RECENT 10 REPRESENTATIVE PUBLICATIONS
1) Zhang, Y., Meng, Q. S., Zhang, L., Luo, Y., Yu, Y. J., Yang, B., Zhang, Y., Esteban, R., Aizpurua, J.*, Luo, Y., Yang, J. L., Dong, Z. C.* and Hou, J. G.*, "Sub-nanometre control of the coherent interaction between a single molecule and a plasmonic nanocavity", Nature Commun. 8, 15225 (2017).
2) Zhang, R., Zhang, X. B., Wang, H. F., Zhang, Y., Jiang, S., Hu, C. R., Zhang, Y., Luo, Y.* and Dong, Z. C.*, Distinguishing Individual DNA Bases in a Network by Non-Resonant Tip-Enhanced Raman Scattering, Angew. Chem. Int. Ed. 56, 5561 (2017).
3) Zhang, Y., Luo, Y., Zhang, Y., Yu, Y. J., Kuang, Y. M., Zhang, L., Meng, Q. S., Luo, Y., Yang, J. L., Dong, Z. C.*, Hou J. G.*, "Visualizing coherent intermolecular dipole-dipole coupling in real space", Nature 531, 623-627 (2016).
4) Liao, M. H., Jiang, S., Hu, C. R., Zhang, R., Kuang, Y. M., Zhu, J. Z., Zhang, Y., Dong, Z. C.*, "Tip-Enhanced Raman Spectroscopic Imaging of Individual Carbon Nanotubes with Subnanometer Resolution", Nano Lett. 16(7), 4040-4046 (2016).
5) Jiang, S., Zhang, Y., Zhang, R., Hu, C. R., Liao, M. H., Luo, Y., Yang, J. L., Dong, Z. C.*, Hou, J. G.*, “Distinguishing adjacent molecules on a surface using plasmon-enhanced Raman scattering”, Nature Nanotech. 10(10), 865-869, 2015.
6) Zhang, R., Zhang, Y., Dong, Z. C.*, Jiang, S., Zhang, C., Chen, L. G., Zhang, L., Liao, Y., Aizpurua, J., Luo, Y., Yang, J. L., and Hou, J. G.*, “Chemical mapping of a single molecule by plasmon-enhanced Raman scattering”, Nature 498, 82-86, 2013.
7) Zhu, S. E.; Kuang, Y. M.; Geng, F.; Zhu, J. Z; Wang, C. Z.; Yu, Y. J.; Luo, Y.; Xiao, Y.; Liu, K. Q; Meng, Q. S.; Zhang L.; Jiang, S.; Zhang, Y.; Wang, G. W.*; Dong, Z. C.*; Hou, J. G., Self-Decoupled Porphyrin with a Tripodal Anchor for Molecular-Scale Electroluminescence, J. Am. Chem. Soc. 135(42), 15794−15800 (2013).
8) Geng, F., Zhang, Y., Yu, Y. J., Kuang, Y. M., Liao, Y., Dong, Z. C.*, and Hou, J. G., “Modulation of nanocavity plasmonic emission by local molecular states of C60 on Au(111)”, Optics Express 20, 26725-26735, 2012.
9) Zhang, C., Zhang, R., Jiang, S., Zhang, L., Gao, H. Y., Chen, L. G., Liao, Y., and Dong, Z. C.*, “Tip-plasmon mediated molecular electroluminescence on the highly oriented pyrolytic graphite substrate”, Appl. Phys. Lett. 111, 073111, 2012.
10) Dong, Z. C.*, Zhang, X. L., Gao, H. Y., Luo, Y., Zhang, C., Chen, L. G., Zhang, R., Tao, X., Zhang, Y., Yang, J. L., and Hou, J. G.*, “Generation of molecular hot electroluminescence by resonant nanocavity plasmons”, Nature Photonics 4, 50-54, 2010.
 
个人简介
董振超,男,1964年1月生于福建。中国科学技术大学教授,合肥微尺度物质科学国家实验室原子分子科学部主任,中科院“百人计划”和教育部“新世纪优秀人才支持计划”入选者,国家基金委重大科研仪器设备研制专项负责人,国家重大科学研究计划课题负责人。1983年毕业于四川大学,1987年获厦门大学硕士学位,1990年获中科院福建物质结构研究所理学博士学位,随后留所工作。1992年到美国衣阿华州立大学(Ames国家实验室)做博士后,1996年到日本国家材料科学研究所(NIMS)工作,先后被聘为主任研究官、主干研究员、课题负责人。长期从事面向未来信息、能源和生物技术的纳米科技和单分子光电效应研究,特别是研制将高分辨扫描隧道显微技术与单光子检测光学技术相融合的联用系统,致力于单分子电致发光、单分子拉曼散射、纳米等离激元光子学、纳米尺度的能量转移等量子领域的前沿探索。已发表SCI科技论文120余篇,其中作为第一作者或通讯作者有多篇文章分别发表在Nature、Nature Photonics、Nature Nanotech、Phys. Rev. Lett.、J. Am. Chem. Soc.和Angew. Chem.上,论文被他引近两千次(H因子=27),多次应邀在美国物理学会、美国化学学会、国际纳米大会、国际真空大会、近场光学等国际知名学术会议上做邀请报告,是单分子光电子学领域具有国际影响力的科技工作者。曾获得“全国优秀科技工作者”荣誉称号(2010),2013年度中国CAIA奖特等奖、中国科技大学杰出研究校长奖、2014年度中国科学院“杰出科技成就奖(主要贡献者)”、“优秀导师奖”、“朱李月华优秀教师奖”和“优秀研究生指导教师奖”。单分子拉曼成像工作入选2013年度“中国科学十大进展”、“中国光学重要成果”(首项)、以及两院院士评选的“中国十大科技进展”。 

 


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