姓名 | 刘慧勇 | 所在单位: | 福州大学 |
职称及级别: | 副教授(高级) | 院士选项: | 其他 |
单位性质:: | 高校 | 研究领域: | 新材料,新能源,采矿与冶金 |
Education:
² Ph.D. (2002) in Physical Chemistry, Fuzhou University
² MSc (1994) in Catalytic Hydrogenation, Dalian Institute of Chemical Physics, the Chinese Academy of Sciences
² BSc (1991) in Chemistry, Fujian Normal University
Bio:
Dr. Liu jointed Fuzhou University in 1994. He was an enthusiastic teacher and one in charge of training many graduate students. Dr. Liu's areas of research include the synthesis of high-performance cathode materials and safety control for lithium ion battery; solid state fast ionic conductor (solid state electrolyte), high specific surface materials as a sorbent for waste water treatment; nanoscale techniques on inorganic and macromolecule powder; high-effective catalyst design on hydrogenation and vehicle exhaust gas, and manufacturing technologies optimization of lithium cell, polymer processing and nano-materials. Dr. Liu’s research has been supported by National Natural Science Foundation of China and Fujian Natural Science Foundation; and by different kinds of enterprises such as environmental treatment companies, hospitals and mining company.
Professional Experience:
l Experience in synthesis of graphene at high temperature melt salt.
l Experience in synthesis of nano-ferric oxide and LiFePO4 cathode materials.
l Experience in synthesis of porous γ-Al2O3 and its application in waste water treatment.
l Experience in synthesis of LiNixCoyMnzO2 lithium ionic cathode materials.
l Research experience in preparation and characterization of high efficient DSA anode.
l Research experience in surface modification by nano-particle with different MOX.
l Experience in the management of research and development base of Zhaori environmental company as a manager.
l Experience in the process development of nano materials of Deri environmental company as a CTO.
l The valuable element recycle from mine tailings and spent lithium batteries.
l The pot hole waste water treatment after molybdenum ore excavating.
l Experience in the application of electro-dialytic technique on metallic ion contained water.
l The catalytic combustion of VOCs.
l Experience in the preparation of low-cost hydrogenation catalyst on heterogeneous reaction.
l The application of ion exchange resin on heterogeneous catalysis.
Patents
1. A method to prepare nano-SnO2 modifying Ni-Co-Mn lithium cathode materials. CN103441249A;(awarded)
2. A method to prepare carbon and CeO2 co-modifying Ni-Co-Mn lithium cathode materials. CN106252641A;(awarded)
3. A synthesis method of multi-graphene modification on graphite anode in lithium battery. CN108134085A;(publishing)
4. A method to prepare composite material of CoMoO4/MoS2 as lithium anode. CN108336335A;(publishing)
5. A method to prepare DSA electrode possessing graded distribution of IrO2 with rich content on its surface. CN109518221A;(publishing)
6. A method to manufacture separator with blocking function at high temperature in lithium battery. CN109713205A;(publishing)
7. A method to prepare LiMn2O4 modifying Ni-Co-Mn lithium cathode materials. CN110034293A; (publishing)
8. A method to prepare flexible anode in lithium battery. CN110034279A; (publishing)
9. A method to prepare graphite/nano-silicon composite anode material. CN110120506A; (publishing)