陈慧鑫
简介:
陈慧鑫,博士,正高级工程师,海西院“春苗”青年人才(2020年),厦门市高层次C类人才(2023年),福建省级高层次B类人才(2024年)。
2017年4月-2018年12月 中国科学院海西研究院厦门稀土材料研究中心 工程师
2019年1月-2024年12月 中国科学院海西研究院厦门稀土材料研究中心 高级工程师
2025年1月-至今 中国科学院海西研究院厦门稀土材料研究中心 正高级工程师
主持国家自然科学基金项目、福建省科技计划项目、厦门市科技计划项目、海西院“前瞻跨越”计划“杰出青年”项目、企业合作开发项目等研究课题。 已在Energy Environ. Sci.、Nano Energy、Energy Storage Mater.、J. Energy Chem.、Chin. Chem. Lett.、J. Power Sources、Chem. Eng. J.、Nat. Commun.、Adv. Funct. Mater. 等国内外权威学术期刊发表论文60余篇, 授权中国发明专利10余项。曾获福建省级高层次人才、厦门市高层次人才和中国科学院海西研究院2020年海燕人才计划“春苗”青年人才称号。参与《固态电化学》、《电池材料—合成、表征与应用》书籍撰写。
研究领域:
能源材料,电化学,锂离子电池及系统制备技术。
近期论文论著:
1.Yan, K.; Zou, Y.; Bao, L.; Xia, Q.; Meng, L.; Lin, H.; Chen, H.*; Yue, H.*, Fluorinated N,P co-doped biomass carbon with high-rate performance as cathode material for lithium/fluorinated carbon battery. Rare Metals 2025, 44 (1), 110-120.
2.Chen, H.; Zhao, C.; Yue, H.; Zhong, G.; Han, X.; Yin, L.; Chen, D., Unraveling the reaction mechanism of high reversible capacity CuP2/C anode with native oxidation POx component for sodium-ion batteries. Chin. Chem. Lett. 2025, 36 (1), 109650.
3.Xia, Q.; Zou, Y.; Yan, K.; Bao, L.; Chen, H.*; Yue, H.*, In-situ texturing hollow carbon host anchored with Fe single atoms accelerating solid-phase redox for Li-Se batteries. J. Colloid Interface Sci. 2024, 667, 282-290.
4.Xia, Q.; Yan, K.; Jin, K.; Wu, Y.; Fu, Y.; Chen, D.; Chen, H.*; Yue, H.*, Interface design of tea stem-derived micropore carbon enables high-performance Na-Se batteries. Chin. Chem. Lett. 2024, https://doi.org/10.1016/j.cclet.2024.110406.
5.Wu, Y. #; Chen, H. #; Wang, H.; Liu, J.; He, Q.; Que, L.; Wang, X.; Yu, F.; Meng, J.; Lu, C.; Xie, Y., High Coulombic efficiency driven by tortuosity gradient regulation for high-performance biomass carbon energy storage materials. J. Energy Storage 2024, 98, 113162.
6.Wei, S. #; Chen, H. #; Yu, F.; Wu, X.; Que, L.; Hu, T.; Wang, J.; Huang, M.; Lu, C.; Xie, Y., Synergistic sulfur-selenium cathodes for lithium-sulfur batteries. J. Power Sources 2024, 598, 234193.
7.He, Q. #; Chen, H. #; Chen, X.; Zheng, J.; Que, L.; Yu, F.; Zhao, J.; Xie, Y.; Huang, M.; Lu, C.; Meng, J.; Zhang, X., Tea-Derived Sustainable Materials. Adv. Funct. Mater. 2024, 34 (11), 2310226.
8.Wang, Y. #; Chen, H. #; Yu, F.; Wei, S.; Song, J.; He, Q.; Xie, Y.; Huang, M.; Lu, C., Oxygen self-doping pyrolyzed polyacrylic acid as sulfur host with physical/chemical adsorption dual function for lithium-sulfur batteries. Chin. Chem. Lett. 2024, 35 (7), 109001.
9.Chen, H.; Meng, L.; Yue, H.; Peng, C.; Zhang, Q.; Zhong, G.; Chen, D., Deciphering the potassium storage phase conversion mechanism of phosphorus by combined solid-state NMR spectroscopy and density functional theory calculations. J. Energy Chem. 2023, 79, 45-53.
10.Wang, H.#; Chen, H.#; Chen, C.; Li, M.; Xie, Y.; Zhang, X.; Wu, X.; Zhang, Q.; Lu, C., Tea-derived carbon materials as anode for high-performance sodium ion batteries. Chin. Chem. Lett. 2023, 34 (4), 107465.
11.Qian, H. #; Liu, Y. #; Chen, H. #; Feng, K.; Jia, K.; Pan, K.; Wang, G.; Huang, T.; Pang, X.; Zhang, Q., Emerging bismuth-based materials: From fundamentals to electrochemical energy storage applications. Energy Storage Mater. 2023, 58, 232-270.
12.Peng, C. #; Chen, H. #; Zhong, G.; Tang, W.; Xiang, Y.; Liu, X.; Yang, J.; Lu, C.; Yang, Y., Capacity fading induced by phase conversion hysteresis within alloying phosphorus anode. Nano Energy 2019, 58, 560-567.
13. Zhong, G. #; Chen, H. #; Cheng, Y.; Meng, L.; Liu, H.; Liu, Z.; Zheng, G.; Xiang, Y.; Liu, X.; Li, Q.; Zhang, Q.; Yue, H.; Lu, C.; Yang, Y., Insights into the lithiation mechanism of CFx by a joint high-resolution 19F NMR, in situ TEM and 7Li NMR approach. J. Mater. Chem. A 2019, 7 (34), 19793-19799.
14. Zhang, Q. #; Chen, H. #; Luo, L.; Zhao, B.; Luo, H.; Han, X.; Wang, J.; Wang, C.; Yang, Y.; Zhu, T.; Liu, M., Harnessing the concurrent reaction dynamics in active Si and Ge to achieve high performance of lithium-ion batteries, Energy & Environ. Sci. 2018, 11, 669-681.
15. Zheng, Z.; Zao, Y.; Zhang, Q.*; Cheng, Y.; Chen, H.*; Zhang, K.; Wang, M.*; Peng, D., Robust erythrocyte-like Fe2O3@carbon with yolk-shell structures as high-performance anode for lithium-ion batteries. Chem. Eng. J. 2018, 347, 563-573.
授权发明专利:
1、陈慧鑫,钟贵明,岳红军,卢灿忠,石墨烯包覆多孔红磷、导电炭复合材料、制备方法及应用,中国, ZL201810392001.3。
2、钟贵明,陈慧鑫,岳红军,胡婷,卢灿忠,钾离子混合超级电容器用正极活性材料和钾离子混合超级电容器,ZL201910222934.2。
3、岳红军,钟贵明,陈慧鑫,卢灿忠,一种氟化碳材料的制备方法及应用,ZL202010047718.1。
4、岳红军,钟贵明,陈慧鑫,卢灿忠,一种氟化碳材料的制备方法及应用,ZL202010048060.6。
5、岳红军,钟贵明,陈慧鑫,卢灿忠,一种氟化碳材料的制备方法及应用,ZL202010048761.X。
6、谢奕明,陈慧鑫,王华燕,卢灿忠,一种磷氮掺杂生物质硬碳材料及其制备方法和应用,ZL202110908449.8。
7、张桥保,陈慧鑫,项奔,安威力,一种多孔硅/硅碳复合材料及其制备方法和应用,ZL202010372862.2。
8、张桥保, 柯承志,孙哲飞,王鸣生,陈慧鑫,一种硫化锌/锡碳复合物及其制备方法和应用,ZL202111003721.4。