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Energy Photonics

Tang,Jiang

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Tang,Jiang

Brief Bio

1999.9-2003.7   Bachelor,  University of Science and Technology of China

2003.9-2006.7   Master,    Changchun Institute of Applied Chemistry, Chinese Academy of Sciences

2007.1-2010.7   Ph.D      Department of Materials Science and Engineering, University of Toronto

2010.7-2011.3   Postdoc    Department of Electrical and Computer Engineering, University of Toronto

2011.3-2012.4   Postdoc    IBM T.J. Watson Research Center

2012.4-present  Professor   Wuhan National Lab for Optoelectronics, Huazhong University of Science and Technology

 

Research Areas

Cu-based thin film photovoltaics including copper zinc tin disulfide, copper antimony sulfide solar cells;  colloidal quantum dot based flexible optoelectronic devices including photodetector, gas sensor and solar cells

 

Publications

  1. T. K. Todorov, J. Tang, S. Bag et.al. Beyond 11% efficiency: Characteristics of State-of-the-Art Cu2ZnSn(S,Se)4solar cells. Advanced Energy Materials, 2013, 3, 34.

  2. J. Tang, H. Liu, D. Zhitomirsky et.al. Quantum Junction Solar Cells. Nano Letters 2012, 12, 4889-4894.

  3. J. Tang,K. Kemp,S. Hoogland, et. al. Colloidal-quantum-dot photovoltaics using atomic-ligand passivation

Nature Materials, 2011, 10, 765-771.

  1. H. Liu+, J. Tang+, I. J. Kramer et. al. Electron Acceptor Materials Engineering in Colloidal Quantum Dot Solar Cells.Advanced Materials 2011, 23, 3832-3837. (+ equal contribution)

  2. J. Tang, E. H. Sargent. Infrared Quantum Dots for Photovoltaics: Fundamentals and Recent Progress. Advanced Materials2011, 23, 12-29.

  3. J. Tang, L. Brzozowski, A. Barkhouse, et. al. Quantum Dot Photovoltaics in the Extreme Quantum Confinement Regime.ACS Nano 2010, 4, 869-878.

  4. J. Tang,X. Wang, L. Brzozowski, et. al. Schottky Quantum Dots Solar Cells Stable in Air under Solar Illumination.Advanced Materials 2010, 22, 1398-1402.  

  5. J. Tang, G. Konstantatos, S. Hinds, et. al. Heavy-Metal-Free Solution-Processed Nanoparticle-Based Photodetectors: Doping of Intrinsic Vacancies Enables Engineering of Sensitivity and Speed. ACS Nano 2009, 3, 331-338.

  6. J. Tang, S. Hinds, S. O. Kelley, et. al. Synthesis of Colloidal CuGaSe2, CuInSe2, and Cu(InGa)Se2Nanoparticles.Chemistry of Materials 2008, 20, 6906-6910.

 

Awards and Honors

2012 The Recruitment Program of Global Experts
2010 The Chinese Government Award for Outstanding Self-financed Students Abord

2006 Liuyongling Graduate Award, Chinese Academy of Sciences

 

Professional Activities

Member, The Optical Society of America


Research Areas

Publications

Awards and Honors

Professional Activities

Research & Faculty