
张超,男,1990年生,山西河曲人,中共党员,博士,讲师。2022年毕业于北京科技大学,获工学博士学位,2018-2022年在清华大学化学系进行博士联合培养。现在赣南师范大学物理与电子信息学院从事教学与科研工作。主要从事锂/钠离子电池电极材料相关研究。作为专任教师承担本科生《大学物理》、《大学物理实验》、《普通物理实验Ⅲ》和《新能源与新材料》等课程。
一、学习工作经历
2014-09—2017-06, 内蒙古科技大学冶金工程专业攻读硕士学位
2017-09—2022-06, 北京科技大学冶金工程专业攻读博士学位
2018-03—2022-06, 清华大学化学系博士联合培养
2022-12 至今, 赣南师范大学, 物理与电子信息学院, 讲师
二、主要研究课题
主要研究领域为锂/钠离子电池电极材料。目前在Nature Communications, ACS Nano, Nano Energy, ACS Applied Materials & Interfaces, Physical Chemistry Chemical Physics, Solid State Ionics, Chemistry-A European Journal,Journal of Solid State Electrochemistry及通讯电源技术等期刊发表研究论文13篇。
主要承担的科研项目:
1.赣南师范大学人才引进科研启动支持,15万,主持,在研
2.北京市科技计划项目:长寿命和低成本钠离子电池研究(Z181100004718006),主要参与者,已结题
三、代表性论文
(1)C. Zhang, et al, Hierarchical Mesoporous Iron Fluoride and Reduced Graphene Oxide Nanocomposite as Cathode Materials for High-Performance Sodium-Ion Batteries, ACS Applied Materials & Interfaces, 2020, 12(15): 17538-17546. (IF=9.5)
(2)C. Zhang(共同一作), et al, Cr-Doped Fe1-xCrxF3·0.33H2O Nanomaterials as Cathode Materials for Sodium-Ion Batteries, ACS Applied Materials & Interfaces, 2021, 13(41): 48653-48660. (IF=9.5)
(3)K. Qiu, C. Zhang (共同一作), et al, Structural Transformation and Electrochemical Properties of a Nanosized Flower-like R-MnO2 Cathode in a Sodium Battery, Physical Chemistry Chemical Physics, 2021, 24(1):551-559. (IF=3.3)
(4)W. Liu, J. Li, W. Li,H. Xu, C. Zhang, et al, Inhibition of Transition Metals Dissolution in Cobalt-Free Cathode with Ultrathin Robust Interphase in Concentrated Electrolyte, Nature Communications, 2020, 11(1): 3629. (IF=16.6)
(5)J. Li, W. Li, C. Zhang, et al, Tuning Li2MnO3-Like Domain Size and Surface Structure Enables Highly Stabilized Li-Rich Layered Oxide Cathodes, ACS Nano, 2023, 17(17): 16827-16839. (IF=17.1)
(6)H. Zhao, W. Li, J. Li, H. Xu, C. Zhang, et al, Enhance Performances of Co-Free Li-Rich Cathode by Eutesctic Melting Salt Treatment, Nano Energy, 2022, 92: 106760. (IF=17.6)
(7)Y. Gan, M. Mu, M. Li, X. Ma, J. Yuan*, H. He, X. Li*, J. Mou, C. Zhang, et al, Trumpet-Like ZnS@C Composite for High-Performance Potassium Ion Battery Anode, Chemistry-A European Journal, 2023, 29(32), e202300373. (IF=4.3)
(8)H. He, Y. Gan, M. Mu, J. Yuan*, C. Zhang, et al, Fabrication of Nano-Solid Spherical Nb2O5/Nitrogen-Doped Carbon Composite for High-Performance Sodium-Ion Battery Anodes, Journal of Solid State Electrochemistry, 2023, 27(9), 2337-2345. (IF=2.5)
(9)D. Wang, H. Zhao, C. Zhang, et al, Low-Cost and High-Rate Porous Carbon Anode Material for Potassium-Ion Batteries, Solid State Ionics, 2022, 381, 115944. (IF=3.2)
(10)W. Li, Z. Li, C. Zhang, et al, Hard Carbon Derived From Rice Husk as Anode Material for High Performance Potassium-Ion Batteries, Solid State Ionics, 2020, 351, 115317. (IF=3.2)
(11)W. Li, B. Yan, H. Fan, C. Zhang, et al, FeP/C Composites as an Anode Material for K‑Ion Batteries, ACS Applied Materials & Interfaces, 2019, 11(25), 22364-22370. (IF=9.5)
(12)W. Hao, H. Si, W. Li, C. Zhang, et al, Sodium Storage Performance and Mechanism of Ag2S Nanospheres as Electrode Material for Sodium-Ion Batteries, Solid State Ionics, 2019, 343, 115071. (IF=3.2)
(13)李泽林,李文挺,张 超等.电解液对钠离子电池硬碳负极的影响, 通讯电源技术, 2020, 37(07), 40-45.
四、联系方式
邮箱:chao_zhang2022@163.com