李盛,教授,博士生导师
先进能源材料研究所 所长
办公地点:南京市新模范马路5号,南京工业大学丁家桥校区
Email: iamsli@njtech.edu.cn
个人简介
李盛,教授,博士生导师。近年来致力于新能源(电化学储能材料与器件)与智能感知(健康医疗)方向的研究。先后主持参与了多项国家级与省部级的相关科研项目,包括国家自然科学基金委面上项目、青年项目、科技部重点研发计划项目、省双碳项目等。目前,以第一或通讯作者在Angew. Chem. Int. Ed., Adv. Funct. Mater., Adv. Sci., Nano Energy, Energy Storage Mater. 等国际一流期刊上发表多篇SCI研究论文,H因子38,总引用4600余次;参与编写英文专业书籍一章;申请并或授权多项国家专利。曾获2016年格里菲斯大学“校长奖章”(Chancellor’s Medal)、2015年国家优秀自费留学生奖学金、2019年度南京工业大学“教书育人”先进个人等荣誉。任《Chinese Chemical Letters(中国化学快报)》杂志的青年编辑委员会委员。
学习工作经历
l 2019-至今:南京工业大学,教授
l 2017-2019:南京工业大学,副研究员
l 2015-2016:格里菲斯大学(Griffith University, 澳大利亚),博士后
l 2011-2015:格里菲斯大学(Griffith University, 澳大利亚),博士
l 2008-2011:北京工业大学,硕士
l 2004-2008:中国地质大学(武汉),学士
研究方向
l 柔性电子与智能感知:人机融合与健康监测
l 新能源方向:柔性储能材料与器件
主讲课程
l 本科生专业课:《纳米技术导论》、《人机交互与智能感知》
l 研究生/留学生课程:《Nanoscience and Technology》
近年代表性论文
1. P. Yang, Z. Wu*, S. Wang, M. Li, H. Chen, S. Qian, M. Zheng, Y. Wang, S. Li*, J. Qiu*, S. Zhang, Synergetic Coupling of Redox-Active Sites on Organic Electrode Material for Robust and High-Performance Sodium-Ion Storage, Angewandte Chemie International Edition, 2023, e202311460
2. X. Han, S. Zhou, H. Liu, H. Leng, S. Li*, J. Qiu*, F. Huo*, Noncrystalline Carbon Anodes for Advanced Sodium-Ion Storage, Small Methods 2023, 7 (3), 2201508
3. Z. Wu, P. Yang, S. Wang, S. Li*, S. Zhang*, Emerging organic electrode materials for aqueous proton batteries, Trends in Chemistry 4 (12), 2023, 1121-1134
4. M. Shao, N. Wu, T. Chen, X. Han, Y. Shen, W. Zhang, B. Zheng, S. Li*, F. Huo*, Amorphous hollow carbon film as a flexible host for liquid Na-K alloy anode, Chinese Chemical Letters 2023, 34 (7), 107767
5. X. Han#, T. Chen#, P. Zhang, Y. Qi, P. Yang, Y. Zhao, M. Shao, J. Wu, J. Weng, S. Li*, F. Huo*, Fast Intercalation in Locally-Ordered Carbon Nanocrystallites for Superior Potassium Ions Storage, Advanced Functional Materials 2022, 32 (10), 2109672
6. T. Zhang, N. Wu, Y. Zhao, X. Zhang, J. Wu, J. Weng, S. Li*, F. Huo*, W. Huang*, Frontiers and Structural Engineering for Building Flexible Zinc–Air Batteries, Advanced Science, 2022, 2103954.
7. X. Han, H. Leng, Y. Qi, P. Yang, J. Qiu*, B. Zheng, J. Wu, S. Li*, F. Huo, Hydrophilic silica spheres layer as ions shunt for enhanced Zn metal anode, Chemical Engineering Journal 2022, 431, 133931.
8. M. Shao, C. Sun, T. Chen, N. Wu, R. Zhang, X. Han, Y. Shen, P. Wu, W. Xiong, W. Zhang, S. Li*, F. Huo, Tailored amorphous titanium oxide and carbon composites for enhanced pseudocapacitive sodium storage, Journal of Energy Chemistry 2022, 65, 127-132.
9. Z Wu, Q Liu, P Yang, H Chen, Q Zhang, S Li*, Y Tang*, S Zhang*, Molecular and Morphological Engineering of Organic Electrode Materials for Electrochemical Energy Storage, Electrochemical Energy Reviews 2022, 5 , 26
10. C. Gao#, J. Yang#, X. Han, M. Abuzar, Y. Chen, W. Liu, W. Zhang, J. Wu, S. Li*, B. Zheng*, F. Huo*. An in situ decorated cathode with LiF and F@C for performance enhanced Li-S batteries. Chemical Communications 2020, 56(47): 6444.
11. F. Zhang#, Y. Shen#, M. Shao, Y. Zhang*, B. Zheng, J. Wu, W. Zhang, A. Zhu, F. Huo, S. Li*. SnSe2 Nanoparticles Chemically Embedded in a Carbon Shell for High-Rate Sodium-Ion Storage. ACS Applied Materials & Interfaces 2020, 12(2): 2346.
12. B. Yuan#, D. Hua#, X. Gu, Y. Shen, L. Xu, X. Li, B. Zheng, J. Wu, W. Zhang, S. Li*, F. Huo*. Polar, catalytic, and conductive CoSe2/C frameworks for performance enhanced S cathode in Li–S batteries. Journal of Energy Chemistry 2020, 48: 128-135.
13. G. Wang, M. Shao, H. Ding, Y. Qi, J. Lian, S. Li*, J. Qiu*, H. Li, F. Huo*. Multiple Active Sites of Carbon for High-Rate Surface-Capacitive Sodium-Ion Storage. Angewandte Chemie International Edition 2019, 58(38): 13584.
14. S. Li#, H. Dai#, Y. Li, C. Lai*, J. Wang*, F. Huo*, C. Wang. Designing Li-protective layer via SOCl2 additive for stabilizing lithium-sulfur battery. Energy Storage Materials 2019, 18, 222.
15. S. Guo, B. Yuan, H. Zhao, D. Hua, Y. Shen, C. Sun, T. Chen, W. Sun, J. Wu, B. Zheng, W. Zhang, S. Li*, F. Huo*. Dual-component LixTiO2@silica functional coating in one layer for performance enhanced LiNi0.6Co0.2Mn0.2O2 cathode. Nano Energy 2019, 58: 673.
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