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Hongwei LI

Date:2019-10-12       Number of clicks:1822

Hongwei Li

Name: Hongwei Li

Education  

B.S.Materials science and engineering, Xi’an Jiaotong University,1998-2002

M.S., Materials science and engineering, Xi’an Jiaotong University, 2002-2005

Ph.D, Materials science and engineering, Xi’an Jiaotong University,2005-2010

Career history: 

2010.9-now, Chang’an University

2013.9-2014.1, Tsinghua UniversityVisiting Scholar

2022.12-2023.12, The University of Auckland, Visiting Scholar

Creative works:

1Hongwei Li, Yueyang Xie, Huina Wang , et al. Facile formation of a thin chromium carbide coating on diamond particles via quaternary molten salt[J]. Journal of Alloys and Compounds, 2022, 928: 167142.

2Hongwei Li, Yueyang Xie, Liqi Zhang, et al. Thermal properties of diamond/Cu composites enhanced by TiC plating with molten salts containing fluoride and electroless-plated Cu on diamond particles[J]. Diamond and Related Materials, 2022, 129: 109337.

3Hongwei Li, Huina Wang, Yueyang Xie, et al. Enhancement of Vanadium Redox Flow Battery Performance with Nitrogen-Functionalized Graphite Felt Electrodes Etched by K2 FeO4[J]. 2023.

4 Tao Fu, Hongwei Li, Feng Wang, et al. One-Step Synthesis of TiO2-Hydroxyapatite Nano-films on NiTi Alloy by Hydrothermal Method[J]. Rare Metal Materials and Engineering, 2016, 45(5): 1128-1131.

5 Tao Fu, Hongwei Li, Sun J, et al. Facile hydrothermal synthesis of TiO2–CaP nano-films on Ti6Al4V alloy[J]. Transactions of Nonferrous Metals Society of China, 2015, 25(4): 1122-1127.

6 Wei Wang, Hongwei Li, Yajie Guo, et al. Mullite whiskers prepared by molten salt method using Si powders[J]. Journal of Advanced Ceramics, 2012, 1: 283-289.

7Yajie Guo, Zhongqi Shi, Hongwei Li, et al. Microstructure Evolution during Combustion Synthesis of Ni/Ni-Aluminide Laminated Composites[C]//Materials Science Forum. Trans Tech Publications Ltd, 2012, 724: 319-322.

8 Wang Wei, Boya Wang, Hanghui Zhu, Hongwei Li, et al. A facile method to fabricate Al 4 B 2 O 9 whiskers on porous SiC substrates for gas–solid separation[J]. Journal of Advanced Ceramics, 2015, 4: 232-236.

9Hongwei Li,  Na Lv, Panyan Lu P Y, et al. Fabrication and Characterization of Silica Aerogel@ Polystyrene Composite Beads by Suspension Polymerization[C]//Materials Science Forum. Trans Tech Publications Ltd, 2015, 804: 199-202.

10Hongwei Li, Tao Fu, Wen Li, et al. Hydrothermal growth of TiO 2-CaP nano-films on a Ti–Nb-based alloy in concentrated calcium phosphate solutions[J]. Journal of Nanoparticle Research, 2016, 18: 1-7.

Specialization

I focus on the following research, two-dimensional patterning of the surface of bulk, granular and other morphological materials and the design and preparation of ultra-thin coatings, advanced preparation technology of high thermal conductivity ceramic-based and metal-based composites and engineering development and application, characterisation of the microstructure of the materials and analysis of the mechanism of structure and function, and the development of new carbon-based electrode materials and their applications for energy storage.

Achievements

Using high thermal conductivity ceramic composites, we have successfully prepared thermally conductive ceramic heaters with high power over the metre scale, which have achieved significant energy saving and consumption reduction in hot-dip galvanising engineering applications.

My group have designed and developed an in-situ composite foam material of aerogel and polystyrene, which has extremely low thermal conductivity and is expected to play an important role in new energy-saving buildings and other fields.

My group have innovatively designed ultra-thin coatings on the surface of diamond particles, a simple and easy-to-use process that is cost-effective and offers the potential for a wide range of applications, particularly in advanced tooling materials and electronic thermal management materials.

My group focus on the design and modification of surface microstructures of novel carbon fibre materials, which are expected to serve as highly efficient electrode materials for electrochemical energy storage devices.

Address: School of Materials Science and Engineering, Chang’an University, Xi‘an, China

Tel:+86-29-62805074
E-mail:lhw@chd.edu.cn



Telephone (029): 82337340
Fax (029): 82337340
Address: 65 Chang'an Middle Road, Xi'an City
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