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Feiyu Kang
Materials Science and Engineering
Tsinghua University
Beijing
Language: Chinese, English
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Carbon Materials Synthesis Characterization Application Natural Graphite Deep Processing Porous Materials Preparation Air Purification Indoor Technology
Areas of Focus
  • Synthesis, characterization, and application of novel carbon materials
  • Deep processing technology of natural graphite
  • Preparation of porous carbon materials
  • Indoor air purification technology
Work Experience
  • 1997-09 to 1997-12 - Visiting Scholar at Hokkaido University, Japan
Academic Background & Achievements
  • 1986 Graduated from Tsinghua University, Bachelor in Metal Materials
  • 1997 PhD from Hong Kong University of Science and Technology
  • Holds six Chinese patents and two US patents
Publications
  • Electrochemical properties of nanosized hydrous manganese dioxide synthesized by a self-reacting microemulsion method, Chengjun Xu, Baohua Li, Hongda Du, et al., 2008
  • High-yield bamboo-shaped carbon nanotubes from cresol for electrochemical application, Ruitao Lv, Lin Zou, Xuchun Gui, Feiyu Kang, et al., 2008
  • Long continuous FeNi nanowires inside carbon nanotubes: synthesis, property and application, Ruitao Lv, Feiyu Kang, Daoyan Cai, et al., 2008
  • Influences of Mesopore Size on Oxygen Reduction Reaction Catalysis of Pt/Carbon Aerogels, Hongda Du, Lin Gan, Baohua Li, et al., 2007
  • Carbon Aerogel Supported Pt-Ru Catalysts for Using as the Anode of Direct Methanol Fuel Cells, Hongda Du, Baohua Li, Feiyu Kang, et al., 2007
  • Single Crystalline Permalloy Nanowires in Carbon Nanotubes: Enhanced Encapsulation and Magnetization, Ruitao Lv, Anyuan Cao, Feiyu Kang, et al., 2007
  • Effect of using chlorine-containing precursors in the synthesis of FeNi-filled carbon nanotubes, Ruitao Lv, Feiyu Kang, Wenxiang Wang, et al., 2007
  • Soft Magnetic Performance Improvement of Fe-filled Carbon Nanotubes by Water-assisted Pyrolysis Route, Ruitao Lv, Feiyu Kang, Wenxiang Wang, et al., 2007
Awards
  • 1993 National Invention Third Prize: Anodic oxidation method for manufacturing expandable graphite
Post a Project

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