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成员信息

Nankai University
成员信息
刘志超 博士后
2021.08.24



 刘志超


研究概况

研究方向:新能源材料开发及应用,主要针对高镍材料的性能提升以及在产业化中的问题研究等

项目经历:基于表面包覆技术的SiO材料合作开发;Si负极循环机理分析及改善;层状高导电性Ti3SiC2改性对锂离子电池低温性能的影响极其作用机理研究;分子筛负载双掺杂TiO2复合结构的构筑及深度处理氨氮废水。

个人简历

● 2021-至今   南开大学材料科学与工程学院 博士后 助理研究员

● 2018-2021   天津力神电池股份有限公司 研发经理

● 2014-2018   天津大学 材料学博士

● 2011-2014   天津城建大学 材料学硕士

● 2007-2011   河北科技大学 环境工程本科

代表性成果

(1) Shisha LiuRuisongGuoetc. Reduced graphene oxide bridged, TiO2 modified and Mn3O4 intercalated Ti3C2Tx sandwich-like nanocomposite as a high performance anode for enhanced lithium storage applications. Journal of Alloys and Compounds, 2018, 762: 643 652652.

(2) Zhichao LiuRuisongGuo, etc. A novel “plane-line-plane” nanostructure of the sandwich-like CNTs@SnO2/Ti3C2Tx 3D nanocomposite as a promising anode for lithium-ion batteries. Ceramics International, 2018, 44: 11757-11764.

(3) Zhichao LiuZhifeng Liu, etc. Preparation and photocatalysis of schlumbergerabridgesii-like CdS modified one-dimensional TiO2 nanowires on zeolite. Journal of Materials Engineering and Performance, 2015, 24: 700-708.

(4) Zhichao LiuZhifeng Liu. A novel 3D hybrid BiOCl-zeolite composite photocatalyst with scaly hierarchical structures. Nano Reports, 2015, 3: 93-96.

(5) Lei Zhao, Zhichao Liu, etc. Synthetic zeolite supported ZnO nanoparticle materials for photocatalytic applications. Materials Technology: Advanced Performance Materials, 2015, 1 (30): 60-64.

(6) ZhichaoLiuZhifeng Liu, etc. Photocatalysis of two-dimensional honeycomb-like ZnOnanowalls on zeolite. Chemical Engineering Journal, 2014, 235: 257-263.

(7) Zhichao LiuZhifeng Liu, etc. Photocatalysis from one-dimensional TiO2 nanowires/synthetic zeolite composites. Mater. Express, 2014, 4 (6): 465-474.

(8) Lei Zhao, Zhichao Liu, etc. Three-dimensional flower-like hybrid BiOI-zeolite composites with highly efficient adsorption and visible light photocatalytic activity. RSC Advances, 2014, 4: 45540-45547. 

(9) Zhifeng Liu, Zhichao Liuetc. Photocatalysis of TiO2 nanoparticles supported on natural zeolite. Materials Technology, 2012, 27: 267-271.