Min Zneg,PhD,Postdoctoral


State Key Laboratory of Catalysis/Solar Energy Division


Tel.:+86-13517287105


E-mail:mzeng@dicp.ac.cn





Education and Work Experiences:

2018-Now,Postdoctoral research (Supervisor: Prof. Can Li), Dalian Institute of Chemical Physics, Chinese Academy of Sciences. 

2014-2017,PhD of Engineering in Materials Science and Engineering (Supervisor: Prof. Xiujian Zhao), State Key Laboratory of silicate building materials, Wuhan University of Technology. 

2012-2014,Master of Engineering in Materials Science and Engineering (Supervisor: Prof. Yuanzhi Li), State Key Laboratory of silicate building materials, Wuhan University of Technology. 

2008-2012,Bachelor of Engineering, Department of Materials Science and Engineering, Wuhan University of Technology.


Research Interests:

His research interests focus on mechanism in catalysis degradation of organic contaminants, including::

1. Degradation process of organic contaminants 

2. Coupling effect of optical, thermal and electrical energy in degradation process 

3. Design the practical pollutants degradation system


Representative Publications:

1.Min Zeng, Yuanzhi Li, Fang Liu, Yi Yang, Mingyang Mao, Xiujian Zhao, Cu doped OL-1 nanoflower: A UV-vis-infrared light-driven catalyst for gas-phase environmental purification with very high efficiency. Appl. Catal. B: Environ. 2017, 200, 251-529. 

2.Min Zeng, Yuanzhi Li, Mingyang Mao, Jilin Bai, Lu Ren, Xiujian Zhao, Synergetic Effect between Photocatalysis on TiO2 and Thermocatalysis on CeO2 for Gas-Phase Oxidation of Benzene on TiO2/CeO2 Nanocomposites. ACS Catal. 2015, 5, 3278-3286. 

3. Fang Liu, Min Zeng, Yuanzhi Li, Yi Yang, Mingyang Mao, Xiujian Zhao, UV-Vis-Infrared Light Driven Thermocatalytic Activity of Octahedral Layered Birnessite Nanoflowers Enhanced by a Novel Photoactivation . Adv. Funct. Mater. 2016, 26, 4518-4526. 

4. Lan. Lan, Yuanzhi Li, M. Zeng, Mingyang Mao, Lu Ren, Yi Yang, Huihui Liu, Li. Yun, Xiujian Zhao, Efficient UV-vis-infrared light-driven catalytic abatement of benzene on amorphous manganese oxide supported on anatase TiO2 nanosheet with dominant {001} facets promoted by a photothermocatalytic synergetic effect. Appl. Catal. B: Environ. 2017, 203, 494-504.