讲师团队

当前位置: 首页 >> 师资队伍 >> 讲师团队 >> 正文

王鑫

发布时间:2022-03-10    浏览次数:

王鑫  博士  讲师

地址:睢阳校区2号楼215

 

教育经历

2015.9-2020.7,北京理工大学,理学博士(导师:曹敏花教授)

2012.9-2015.7,河南师范大学,工学硕士(导师:蒋凯教授)

2007.9-2011.6,安阳师范学院,理学学士

 

工作经历

2020.8-至今,商丘师范学院化学化工学院新能源系,讲师

 

主讲课程

无机化学实验,太阳能电池新技术。

 

研究方向

MXene材料在能源储存/转换的应用

/钠离子电池

 

代表性研究成果

[1]   Xin Wang, Jie Wang, Jinwen Qin, Xi Xie, Rui Yang, and Minhua Cao, Surface charge engineering for covalently assembling three-dimensional MXene networks for ultrahigh-rate and ultralong-life sodium storage, ACS Applied Materials & Interfaces, 2020, 12, 35, 39181-39194.

[2]  Xin Wang, Shuguang Wang, Qin, Xi Xie, Rui Yang, and Minhua Cao, Constructing conductive bridges between Ti3C2Tx MXene nanosheets for high-performance lithium-ion batteries and highly efficient hydrogen evolution, Inorganic Chemistry, 2019, 58, 16524-16536.

[3]  Yao Li,# Xin Wang,# Minhua Cao, Three-dimensional porous carbon frameworks derived from mangosteen peel waste as promising materials for CO2 capture and supercapacitors, Journal of CO2 Utilization, 2018, 27, 204–216.(共一)

[4]  Xin Wang, Zhiyong Gao, Jiuli Chang, Dapeng Wu, Xiaorui Wang, Fang Xu, Yuming Guo and Kai Jiang, Electrochemical energy storage and absorptive dye removal of platanus fruit derive porous carbon, RSC Advance, 2015, 15, 698-706. 

[5]  Yao Li, Ran Xu, Xin Wang, Binbin Wang, Jianliang Cao, Juan Yang, Jianping Wei, Waste wool derived nitrogen-doped hierarchical porous carbon for selective CO2 capture, RSC Advance, 2018, 8, 19818-19826.

[6]  Jie Wang, Yingjie Hu, Baifeng Yang, Xin Wang, Jinwen Qin, Minhua Cao, Mechanochemistry-induced biaxial compressive strain engineering in MXenes for boosting lithium storage kinetics, Nano Energy, 2021, 87, 106053.

[7]  Yu Cui, Jie Wang, Xin Wang, Jinwen Qin, and Minhua Cao, A hybrid assembly of MXene with NH2-Si nanoparticles boosting lithium storage performance, Chemistry An Asian Journal, 2020, 15(8), 1376-1383.

[8]  Jinwen Qin, Linlin Hao, Xin Wang, Yan Jiang, Xi Xie, Rui Yang, and Minhua Cao, Toward understanding the enhanced pseudocapacitive storage in 3D SnS/Mxene architecture enabled by engineered surface, Chemistry An European Journal, 2020, 26, 11231-11240.