曾敏的个人主页
  
 
 
       
 基本信息
 姓名: 曾敏
 职称: 教授
 学位: 博士
 职务: 
 指导资格: 硕士生导师
 部门: 材料科学与工程学院
 研究方向: 光催化、电子陶瓷、锂离子电池材料
 社会兼职:
 
 
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 邮箱: zengmin@swust.edu.cn
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实验室简介
发布时间: 2015-12-08  文章作者:曾敏  

1. 主要研究方向

无机纳米材料

2. 主要研究内容

(1),纳米二氧化钛光催化研究:

Min Zeng, “Influence of TiO2 Surface Properties on Water Pollution Treatment and Photocatalytic Activity”, Bulletin of the Korean Chemical Society, 2013, 34(3), 953-956

Min Zeng, Hui Xu, Xiao-Hua Huang, Study on the Synthesis and Electrochemical Properties of Cr-Sb Co-doped TiO2”, International Journal of Electrochemical Science, 2015, 10, 9877-9884

Fuyun Li, Min Zeng*, Hongtao Yu, Hui Xu, Jing Li, “Dielectric characteristics of B-site-modified hexagonal-barium titanate”, Journal of Materials Science: Materials in Electronics, 2016, 1-5

(2),钛酸钡电子陶瓷材料:

Min Zeng, “Surface reaction characteristics at low temperature synthesis BaTiO3 particles by barium hydroxide aqueous solution and titanium tetraisopropoxide”, Applied Surface Science, 2011, 257, 6636-6643

Min Zeng, Yongjun Ma, Yunhong Wang, Chonghua Pei, “The effect of precipitant on co-precipitation synthesis of yttrium aluminum garnet powders”, Ceramics International, 2012, 38(8), 6951-6956

Min Zeng, “Co-precipitation synthesis of iron-containing garnets Y3Al5-xFexO12 and their magnetic properties”, Journal of magnetism and magnetic materials, 2015, 393, 370-375

(3),锂离子电池正负极材料:

Hui Xu, Min Zeng*, Jing Li and Xiaoling Tong, “Facile hydrothermal synthesis of flower-like Co-doped NiO hierarchical nanosheets as anode materials for lithium-ion batteries”, RSC Advances, 2015, 5,vol: 111, 91493-91499

Hui Xu, Min Zeng*, Jing Li and Xiaoling Tong, “Cr-Doped TiO2 Core–Shell Nanospheres with Enhanced Photocatalytic Activity and Lithium Storage Capacity”, NANO, 2016, 11, 1

Fuyun Li, Min Zeng*, Jing Li, Hui Xu, Preparation and electrochemical performance of Mg-doped Li4Ti5O12 nanoparticles as anode materials for lithium-ion batteries”, International Journal of Electrochemical Science, 2015, 10, 10445-10453

Hui Xu, Min Zeng, Jing Li, “Graphene-Wrapped Cr2O3 Hollow Nanospheres with Enhanced Electrochemical Performances for Lithium-Ion Batteries” International Journal of Electrochemical Science, 2015, 10, 7361-7370

 

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