u主持项目情况 科研项目: [1] 湖南省自然科学基金青年项目A类(原省杰青,2025JJ20047),2025-2027. [2] 湖南省教育厅重点项目1项(22A0114),2022-2025. [3] 湖南省科技创新人才计划优秀博士后创新人才项目 2021RC2091,2021-2023. [4] 国家自然科学基金青年项目1项(21701044),2018-2020. [5] 中国博士后第66批面上资助(2019M662800),2019-2020. [6] 湖南省自然科学基金青年基金1项(2017JJ3097),2017-2019. [7] 湖南省教育厅重点项目1项(17A086),2017-2019. 教改及课程建设项目: [1] 湖南省普通本科高校教学改革研究重点项目(202502000366),2025-2028. [2] 湖南省教育科学“十四五”规划一般项目(XJK23CGD006),2023-2025. [3] 湘潭大学教学改革项目, 2022-2025. [4] 湘潭大学教学课程建设项目, 2021-2023. [5] 湘潭大学教学数智化课程建设项目, 2025-2026.
u近几年来主要科研论文 [1] Meng Wu, Mingjun Jing*, Yong Pei*, et al, Molybdenum and tungsten dichalcogenides quantum dots: Properties, synthesis, and energy applications. Coordination Chemistry Reviews, 2026, 546, 217043. [2] Jiayi Wen, Mingjun Jing*, Tianjing Wu*, et al, Versatile defect-laden boronizing hard carbon for superior sodium-ion battery efficacy. Chemical Engineering Journal, 2025, 520, 166436. [3] Jinzhi Yuan, Mingjun Jing*, Tianjing Wu*, et al, Ultrafine MnS/S-doped C composite prepared from Mn metal complex for sodium-ion battery with enhanced electrochemical kinetic behaviors. Journal of Energy Storage, 2025, 137, 118722. [4] Fang Chen, Mingjun Jing*, Tianjing Wu*, et al, Facile cobalt coordination imprinted Schiff-base polymer derived Co, N-doped carbon material boosts oxygen reduction reaction. Journal of Alloys and Compounds, 2025, 1016, 178835. [5] Zhangli Ye, Tianjing Wu, Mingjun Jing*, et al, Prospective Obstacles and Improvement Strategies of Manganese-Based Materials in Achieving High-Performance Rechargeable Zinc-Air Batteries. Batteries, 2025, 11, 255. [6] Mingguang Yi, Mingjun Jing*, Tianjing Wu, et al, Recent Developments of Carbon Dots for Advanced Zinc-Based Batteries: A Review. Advanced Functional Materials, 2024, 2400001. [7] Tianjing Wu, Honghui Hu, Mingjun Jing*, et al, Defective carbon-bridged Cu sites to boost oxygen reduction reaction in neutral zinc-air batteries, Chemical Engineering Journal, 2024, 500: 157023. [8] Wenhui Deng, Tianjing Wu, Mingjun Jing*, et al, Microcosmic modulation of the Co-N bonding structure improves the multi-functional electrocatalytic performance, Journal of Materials Chemistry A, 2024, 12: 10349. [9] Peng Yue, Dan Li, Mingjun Jing*, et al, Nickel and Sulfur Coconfined Nitrogen-Rich Carbon Nanofibers as Anode Materials for Pseudocapacitive Sodium Storage, ACS Applied Nano Materials, 2024, 24: 27874. [10] Zhanpeng Chen, Jiabi Jiang, Mingjun Jing*, et al, Covalent organic framework‐derived Fe, Co‐nitrogen codoped carbon as a bifunctional electrocatalyst for rechargeable efficient Zn–air batteries, Carbon Neutralization. 2024, 3: 689. [11] Li He, Mingjun Jing*, Dan Li, et al, Electrochemically Alternating Voltage Induction and in-Situ Preparation of Tin-Based Multiphase Structures Anode for Sodium-Ion Batteries. Journal of Alloys and Compounds, 2024, 976: 172968. [12] Yufeng Wu, Mingjun Jing*, Juan Li, et al, Collaborative Integration of Fe-Nx Active Center into Defective Sulfur/Selenium-Doped Carbon for Efficient Oxygen Electrocatalysts in Liquid and Flexible Zn-Air Batteries. Chinese Chemical Letters, 2023, 35: 109269. [13] Yujie Huang, Jinyang Wu, Mingjun Jing*, et al, Multivalent Manganese-Based Composite Materials for Sodium Energy Storage in Ether Electrolyte. Journal of Power Sources, 2023, 588: 233742. [14] Jinyang Wu, Mingjun Jing*, Tianjing Wu, et al, Enhanced Kinetic Behaviors of Hollow MoO2/MoS2 Nanospheres for Sodium-Ion-Based Energy Storage. Journal of Colloid and Interface Science, 2023, 641: 831. [15] Mingjun Jing, Junchang Liu, Peng Ge*,et al, Engineering Sphere-like Porous FeF3@C Cathode with Rational Interfacial Designing towards High-Power Batteries. Rare Metals, 2023, 42: 954-970. [16] Yuqing Yang, Xinkai Xu, Mingjun Jing*, et al, Multi-Color Materials NiMn LDH Loaded on Activated Carbon as Electrode for Electrochemical Performance Investigation. Applied Surface Science, 2023, 611: 155562. [17] Weipeng Li, Xinkai Xu, Mingjun Jing*,et al, Biomass Absorption of Nickel Salt Derived Carbon Wrapped NiS/Ni3S4 Nanocomposite as Efficient Electrode for Supercapacitors. Journal of Alloys and Compounds, 2023, 934, 167838. [18] Wenhui Deng, Tianjing Wu, Mingjun Jing*, et al, Single Atomic Fe-Pyridine N Catalyst with Dense Active Sites Improve Bifunctional Electrocatalysts Activity for Rechargeable and Flexible Zn-Air Battery. Journal of Materials Chemistry A, 2022, 10: 20993. [19] Wenhui Deng, Tianjing Wu, Mingjun Jing*, et al, Heteroatom functionalized double-layer carbon nanocages as highly efficient oxygen electrocatalyst for Zn-Air batteries. Carbon, 2022, 186, 589.
u主要代表性国家发明专利 [1] 景明俊,胡梦利,王兴宇等,一种MnO/Cu/C复合材料及其制备方法和应用,申请号:CN202411639866.7 [2] 景明俊,吴天景,张嘉衡等,一种制备氮掺杂石墨烯材料的电化学方法,申请号:CN201810853389.2 [2] 景明俊,吴天景,要笑刚等,一种氮磷共掺杂多孔生物质碳材料及其制备方法和在超级电容器中的应用,申请号:CN201810857783.3 [3] 纪效波,景明俊,曹晓雨等,一种MnCo2O4/Co2(OH)3Cl复合材料的水系不对称型超级电容器及其制备方法, CN104766723A [4] 纪效波,景明俊,李思敏等,一种制备CuO纳米片粉体材料的方法,CN105839128A |