1、第一作者及通讯作者论文:(注:(#)表示第一作者,(*)表示通讯作者。) 2026年 (1) Zongyang Li, Mingliu Kuang, Chen Li, et al. Regulating bulk transport via a Li3P/Li-Cu bicontinuous ionic-electronic conducting network: a fundamental strategy toward long-cycling garnet-based solid-state lithium metal batteries. Advanced Functional Materials (2026): e76463. (IF=19,一区TOP期刊) 2024年 (1) Zongyang Li, Desha Tang, Wenjie Wang, et al. Construction of composite lithium with high adhesion work and fast ionic conductivity by black phosphorus for solid-state lithium batteries. Nano Energy, 2024, 132: 110356. (IF=17.1,一区TOP期刊) (2) Zongyang Li, Weikang Zheng, Guanjie Lu, et al. Superionic conductor enabled composite lithium with high ionic conductivity and interfacial wettability for solid‐state lithium batteries. Advanced Functional Materials, 2024, 34(12): 2309751.(IF=19,一区TOP期刊) 2023年 (1) Zongyang Li, Xiaoping Jiang, Guanjie Lu, et al. Composite lithium with high ionic conducting Li3Bi alloy enabled high-performance garnet-type solid-state lithium batteries. Chemical Engineering Journal, 2023, 465: 142895.(IF=13.2,一区TOP期刊) 2019年 (1) Zongyang Li, Hongdong Liu, Jiamu Huang, et al. MOF-derived α-MnSe/C composites as anode materials for Li-ion batteries. Ceramics International, 2019, 45(17): 23765-23771. (2) Zongyang Li, Lianying Zhang, Lei Zhang, et al. ZIF-67-derived CoSe/NC composites as anode materials for lithium-ion batteries. Nanoscale Research Letters, 2019, 14(1): 358. 2017年 (1) Zongyang Li, Hongdong Liu, Haibo Ruan, et al. In situ synthesis rodlike MnO2/reduced graphene oxide composite as anode materials for Li-ion batteries. Journal of Materials Science: Materials in Electronics, 2017, 28(23): 18099-18105. 2. 其它作者论文 (1) Weikang Zheng, Zongyang Li, Guanjie Lu, et al. 3D flexible N-doped carbonaceous materials/PVDF-HFP composite frameworks for quasi-solid-state 4.5 V Li-ion capacitors. Chemical Engineering Journal, 2023, 451: 138581. (2) Weikang Zheng, Zongyang Li, Guan Han, et al. Nitrogen-doped activated porous carbon for 4.5 V lithium-ion capacitor with high energy and power density. Journal of Energy Storage, 2022, 47: 103675. (3) Xiaoping Jiang, Zongyang Li, Guanjie Lu, et al. Pores enriched CoNiO2 nanosheets on graphene hollow fibers for high performance supercapacitor-battery hybrid energy storage. Electrochimica Acta, 2020, 358: 136857. (4) Chen Li, Yongbiao Mu, Tongtong Deng, Zongyang Li, et al. In Situ Construction of a 3D Superionic Skeleton in Sodium Anode for Solid‐State Sodium Batteries with a 15 000‐Cycle Lifespan at 3C. Advanced Materials, 2025, 37(20): 2419190. (5) Tongtong Deng, Chen Li, Guanjie Lu, Zongyang Li, et al. Accelerating interfacial desolvation kinetics using NaF-rich composite sodium for high-performance all-climate sodium–metal batteries[J]. Energy & Environmental Science, 2025, 18(7): 3278-3287. 3. 授权发明专利 (1) 王荣华,李宗阳,徐朝和,一种用于固态锂金属电池的复合锂负极材料及其制备方法和应用,授权公告号:CN117059742B (2) 徐朝和,王荣华,刘兴江,李宗阳,蒋晓平,宗军,一种单根纤维电容器及其制造方法,授权公告号:CN110993345B (3) 柳红东,李宗阳,阮海波,胡荣,黄佳木,一种金属有机骨架Mn-BTC及制备方法和应用,授权公告号:CN109400905B (4) 柳红东,李宗阳,阮海波,胡荣,黄佳木,一种磷化钴/石墨烯/N掺杂碳复合材料及其制备方法,授权公告号:CN109411736B (5) 柳红东,李宗阳,阮海波,胡荣,黄佳木,一种纳米线状硒化锰/碳复合材料的制备方法,授权公告号:CN109560277B (6) 柳红东,李宗阳,胡荣,阮海波,黄佳木,一种微球状硒化锰/碳复合材料的制备方法,授权公告号:CN109360971B |