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副高职称

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黎晋良

职称:副研究员

工作地点:蒙民伟楼315B

电话:

E-mail:lijinliang@email.jnu.edu.cn

个人简介


2008-2012年,华南理工大学,学士

2012-2017年,华东师范大学,博士

2017-2020年,暨南大学,博士后

2019-至今,暨南大学,副研究员


主讲课程


选修课:大学生科技创新案例设计与制作


研究方向


碱金属离子电池,包括锂//钾离子电极正负极材料设计及电解液优化。


研究成果


以第一作者和通讯作者身份发表论文20余篇,主持国家自然科学基金青年项目1项,中国博士后基金2项。申请发明专利11项,授权4项。

1. X. Li, Z. Liu, J. Li*, H. Lei, W. Zhuo, W. Qin, X. Cai, K.N. Hui, L. Pan, W. Mai*, Insights on the mechanism of Na-ion storage in expanded graphite anode, J. Energy Chem., 2021, 53, 56-62 (JCR1区,IF=7.216)

 

2. Y. Zhang, Z. Chen*, J. Li*, Z. Lu, X. Wang, Self-assembled synthesis of oxygen-doped g-C3N4 nanotubes in enhancement of visible-light photocatalytic hydrogen, J. Energy Chem., 2021, 54, 36-44 (JCR1区,IF=7.216)

 

3. J. Xie, J. Li*, X. Li, H. Lei, W. Zhuo, X. Li, G. Hong, K.N. Hui, L. Pan, W. Mai*, Ultrahigh “Relative Energy Density” and Mass Loading of Carbon Cloth Anodes for K-Ion Batteries, CCS Chem.,2020, 2, 791-799 (中国化学会旗舰期刊)

 

4. J. Xie, J. Li*, W. Zhuo, W. Mai*, Recent progress of electrode materials cooperated with potassium bis(fluorosulfonyl)imide-containing electrolyte for K-ion batteries, Materials Today Adv., 2020, 6, 100035

 

5. J. Li#, N. Zhuang#, J. Xie, X. Li, W. Zhuo, H. Wang, J. Na, X. Li*, Y. Yamauchi*, W. Mai*, K-ion storage enhancement in Sb2O3/reduced graphene oxide using ether-based electrolyte, Adv. Energy Mater., 2020, 10 (5), 1903455 (JCR1区,IF=25.245)

 

6. J. Li, L. Han, Y. Li, J. Li*, G. Zhu, X. Zhang, T. Lu, L. Pan, MXene-decorated SnS2/Sn3S4 hybrid as anode material for high-rate lithium-ion batteries, Chem. Eng. J., 2020, 380, 122590 (JCR1 IF=10.652)

 

7. J. Xie, X. Li, H. Lai, Z. Zhao, J. Li*, W. Zhang, W. Xie, Y. Liu, W. Mai*, A Robust Solid Electrolyte Interphase Layer Augments the Ion Storage Capacity of Bimetallic-Sulfide-Containing Potassium-Ion Batteries, Angew. Chem. Int. Edit., 2019, 58(41), 14740-14747 (JCR1 IF=12.959)

 

8. J. Xie#, Y. Zhu#, N. Zhuang, X. Li, X. Yuan, J. Li*, G. Hong, W. Mai*, High-concentration ether-based electrolyte boosts the electrochemical performance of SnS2–reduced graphene oxide for K-ion batteries, J. Mater. Chem. A, 2019, 7, 19332-19341 (JCR1 IF=11.301)

 

9. J. Li, N. Zhuang, J. Xie, Y. Zhu, H. Lai, W. Qin, M. Javed, W. Xie, W. Mai*, Carboxymethyl Cellulose Binder Greatly Stabilizes Porous Hollow Carbon Sub-Microspheres in Capacitive K-Ion Storage,” ACS Appl. Mater. Interfaces, 2019, 11, 15581-15590. (JCR1 IF=8.758)

 

10. Y. Li, B. Ni, X. Li, X. Wang*, D. Zhang, Q. Zhao, J. Li*, T. Lu*, W. Mai, L. Pan, High-Performance Na-Ion Storage of S-Doped Porous Carbon Derived from Conjugated Microporous Polymers, Nano-Micro Lett., 2019, 11, 60 (JCR1 IF=12.264)

 

11. J. Li,J. Li*, Z. Ding, X. Zhang, Y. Li, T. Lu, Y. Yao, W. Mai, L. Pan*, In-situ encapsulation of Ni3S2 nanoparticles into N-doped interconnected carbon networks for efficient lithium storage, Chem. Eng. J, 2019, 378, 122108 (JCR1IF=10.652)

 

12. J. Li, W. Qin, J.P. Xie, H. Lei, Y.Q. Zhu, W.Y. Huang, X. Xu, Z.J. Zhao, W.J. Mai*, Sulphur-doped reduced graphene oxide sponges as high-performance free-standing anodes for K-ion storage, Nano Energy, 2018, 53, 415-424. (JCR1 IF=16.602)

 

13. J. Li, W. Qin, J. Xie, R. Lin, Z. Wang, L. Pan*, W. Mai*, Rational design of MoS2-reduced graphene oxide sponges as free-standing anodes for sodium-ion batteries, Chem. Eng. J, 2018, 332, 260-266 (JCR1 IF=10.652)

 

14. J. Xie, Y. Zhu, N. Zhuang, H. Lei, W. Zhu, Y. Fu, M. Javed, J. Li*, W. Mai*, Rational design of metal organic framework-derived FeS2 hollow nanocages@reduced graphene oxide for K-ion storage, Nanoscale, 2018, 10(36), 17092-17098 (JCR1 IF=6.895)

 

15. B. Liu, X. Liu*, M. Ni, C. Feng, X. Lei, C. Li, Y. Gong, L. Niu,J. Li*, L.K. Pan, SnO2 as co-catalyst for enhanced visible light photocatalytic activity of Bi2MoO6, Appl. Surf. Sci., 2018, 280-287 (JCR2 IF=5.155)

 

16. J. Li, W. Qin, D. Yan, Y. Yao, L. Pan, Significantly improved sodium ion storage performance of CuS anchored into reduced graphene oxide, ACS Appl. Mater. & Interfaces, 2017, 9, 2309-2316 (JCR1 IF=8.758)