陈核章,男,湖南科技大学化学化工学院,讲师,硕士生导师,2018年博士毕业于中南大学材料冶金专业,承担《电化学测试技术》和《化工安全与环保》等本科和研究生课程的教学工作,主要从事锂/钠离子电池正负极材料合成与资源回收和有色金属资源化的研究,近年来主持国家自然科学基金等项目,并在《ACS applied materials & interfaces》、《Ceramics International》、《Journal of Alloys and Compounds》、《Frontiers in Chemistry》和《Advanced Functional Materials》等刊物上发表研究论文10余篇。
国家自然科学基金,原子空位调控提升氟磷酸钒钠能量密度及其机理研究,2022.01-2024.12
1. Chen, H.; Zhang, B.; Wang, X.; Dong, P.; Tong, H.; Zheng, J.-c.; Yu, W.; Zhang, J., CNT-Decorated Na3V2(PO4)(3) Microspheres as a High-Rate and Cycle-Stable Cathode Material for Sodium Ion Batteries. ACS applied materials & interfaces 2018, 10 (4), 3590-3595.
2. Chen, H.; Zhang, B.; Cao, Y.; Wang, X.; Yao, Y.; Yu, W.; Zheng, J.; Zhang, J.; Tong, H., ZnS nanoparticles embedded in porous honeycomb-like carbon nanosheets as high performance anode material for lithium ion batteries. Ceramics International 2018, 44 (12), 13706-13711.
3. Chen, H.; Huang, Y.; Mao, G.; Tong, H.; Yu, W.; Zheng, J.; Ding, Z., Reduced Graphene Oxide Decorated Na3V2(PO4)(3) Microspheres as Cathode Material With Advanced Sodium Storage Performance. Frontiers in Chemistry 2018, 6.
4. Chen, H.; Zhang, B.; Zhang, J.; Yu, W.; Zheng, J.; Ding, Z.; Li, H.; Ming, L.; Bengono, D. A. M.; Chen, S.; Tong, H., In-situ Grown Sn-2 Nanosheets on rGO as an Advanced Anode Materia l for Lithium and Sodium Ion Batteries. Frontiers in Chemistry 2018, 6.
5. Zhang, B.; Chen, H.; Tong, H.; Wang, X.; Zheng, J.; Yu, W.; Zhang, J.; Li, J.; Zhang, W., Synthesis and electrochemical performance of Ni doped Na3V2(PO4)(3)/C cathode materials for sodium ion batteries. Journal of Alloys and Compounds 2017, 728, 976-983.
6. Zheng, J.-c.; Yao, Y.-y.; Mao, G.-q.; Chen, H.-z.; Li, H.; Cao, L.; Ou, X.; Yu, W.-j.; Ding, Z.-y.; Tong, H., Iron-zinc sulfide Fe2Zn3S5/Fe1-xS@C derived from a metal-organic framework as a high performance anode material for lithium-ion batteries. Journal of Materials Chemistry A 2019, 7 (27), 16479-16487.
7. Sun, C.; Zhao, B.; Cui, R.-d.; Mao, J.; Dai, K.-H.; Chen, H.-Z.; Zhang, X.-h.; Zheng, J.-c., In Situ-Constructed Multifunctional Interface for High-Voltage 4.6 V LiCoO2. ACS applied materials & interfaces 2023, 15 (18), 21982-21993.
8. Sun, C.; Zhao, B.; Mao, J.; Dai, K.-H.; Wang, Z.-y.; Tang, L.-b.; Chen, H.-z.; Zhang, X.-h.; Zheng, J.-c., Enhanced Cycling Stability of 4.6 V LiCoO2 Cathodes by Inhibiting Catalytic Activity of its Interface Via MXene Modification. Advanced Functional Materials 2023, 33 (30).