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Date:2017-12-15   View:

  Weiqi ZHANG (Qualified) Associate Professor
  Tel: +86-15896358020
  Add.: Energy Research Institute, Jiangsu University
  Research Interests: Polymer Electrolyte Membrane Fuel Cell

  Ph.D., 2015 Energy and Environment Science, Nagaoka University of Technology, Japan
  M.S., 2012 Materials Science and Technology, Nagaoka University of Technology, Japan 
  B.S., 2010 Materials Science and Technology, ZhengZhou University, China

  Professional experience
  2016-present: (Qualified) Associate Professor, Energy Research Institute,Jiangsu University, China

  Research Interests
  New energy technologies in PEMFC

  Selected Papers
  [1] Weiqi Zhang, Sayoko Shironita, Minoru Umeda, Electrochemical impedance spectroscopy investigation on the ionomer degradation modeling of the anode using a porous microelectrode, Int. J. Hydrogen Energy41 (2016) 6526-6533. (SCI, IF: 3.205)
  [2] Weiqi Zhang, Sayoko Shironita, Minoru Umeda, Three-phase interphase modeling of anode in membrane electrode assembly using a porous microelectrode, Int. J. Hydrogen Energy40 (2015) 4349-4356. (SCI, IF: 3.205)
  [3] Weiqi Zhang, Sayoko Shironita, Tsukasa Sakai, Minoru Umeda, Factors controlling the methanol oxidation and oxygen reduction reaction at Pt/C electrocatalysts, State-of-the-art Fuel Cells and Hydrogen Technology in Japan, Collected from the 20th FCDIC Fuel Cell Symposium and the 1st FCV Forum, 2014, p. 175-180.
  [4] Weiqi Zhang, Takahiro Maruta, Sayoko Shironita, Minoru Umeda, Anode and cathode degradation in a PEFC single cell investigated by electrochemical impedance spectroscopy, Electrochim. Acta131 (2014) 245-249. (SCI, IF: 4.803)
  [5] Weiqi Zhang, Sayoko Shironita, Minoru Umeda, Low Pt loading and high hydrogen oxidation reaction performance at Pt/TiO2-SiO2 investigated by a porous microelectrode, Catal. Lett.144 (2014) 112-116. (SCI, IF: 2.294)
  [6] Sayoko Shironita, Weiqi Zhang, Tsukasa Sakai, Minoru Umeda, Evaluation of reaction selectivity at various Pt/C electrocatalysts using a porous microelectrode in the presence of methanol and oxygen, Electrochim. Acta128 (2014) 265-270. (SCI, IF: 4.803)

  2009, Outstanding Student Scholarship of ZhengZhouUniversity

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