论文著作:
[1]A Self-Regulated Interface Enabled by Multi-Functional pH Buffer for Reversible Zn Electrochemistry.Advanced Functional Materials, 2024: 10.1002/adfm.202313859.
[2]Progress on Bifunctional Carbon-Based Electrocatalysts for Rechargeable Zinc–Air Batteries Based on Voltage Difference Performance.Advanced Energy Materials, 2024: 10.1002/aenm.202303352.
[3]Self-Smoothing Deposition Behavior Enabled by Beneficial Potential Compensating for Highly Reversible Zn-Metal Anodes.Advanced Functional Materials, 2023
[4]Highly Entangled Hydrogel Enables Stable Zinc Metal Batteries via Interfacial Confinement Effect.ACS Energy Letters, 2023, 8 (12) : 5253-5263.
[5]Selectively etching-off the highly reactive (002) Zn facet enables highly efficient aqueous zinc-metal batteries.Energy & Environmental Science, 2023
[6]Supramolecular Salt-Assisted Quasi-Solid-State Electrolyte Promoting Dual Conductive Interface for High-Energy-Density Lithium Metal Batteries.Advanced Energy Materials, 2023
[7]An improved 9 micron thick separator for a 350 Wh/kg lithium metal rechargeable pouch cell.NATURE COMMUNICATIONS, 2022, 13 (1) : 6788.
[8]Increasing Accessible Subsurface to Improving Rate Capability and Cycling Stability of Sodium‐Ion Battery.Advanced Materials, 2021: 2100808.
[9]Uniform V2O5 nanosheet-assembled hollow microflowers with excellent lithium storage properties.Energy & Environmental Science, 2013, 6 (5) : 1476-1479.
[10]Template-Free Synthesis of VO2 Hollow Microspheres with Various Interiors and Their Conversion into V2O5 for Lithium-Ion Batteries.Angewandte Chemie International Edition, 2013, 52 (8) : 2226-2230.
[11]Chemical Synthesis of 3D Graphene-Like Cages for Sodium-Ion Batteries Applications.Advanced Energy Materials, 2017, 7 (20) : 1700797.
[12]Observation of Pseudocapacitive Effect and Fast Ion Diffusion in Bimetallic Sulfides as an Advanced Sodium-Ion Battery Anode.Advanced Energy Materials, 2018, 8 (19) : 1703155.
[13]Architecture design principles for stable electrodeposition behavior-towards better alkali metal (Li/Na/K) anodes.Energy Storage Materials, 2022, 45: 48-73.
[14]Unique ion rectifier intermediate enabled by ultrathin vermiculite sheets for high-performance Zn metal anodes.Science Bulletin, 68 (12) : 1283-1294.
[15]Regulation of Interphase Layer by Flexible Quasi-Solid Block Polymer Electrolyte to Achieve Highly Stable Lithium Metal Batteries.Advanced Functional Materials, 2023, 33 (27) : 202300425.
[16]Tailoring the Crystal-Chemical States of Water Molecules in Sepiolite for Superior Coating Layers of Zn Metal Anodes.Advanced Functional Materials, 2023, 33 (13) : 202211088.
[17]Vanadium-modified hard carbon spheres with sufficient pseudographitic domains as high-performance anode for sodium-ion batteries.Carbon Energy, 2022, 5 (2) : DOI:10.1002/cey2.191.
[18]Necklace-like Si@C nanofibers as robust anode materials for high performance lithium ion batteries.Science Bulletin, 2019, 64 (4) : 261-269.
[19]Modulation of hydrogel electrolyte enabling stable zinc metal anode.Energy Storage Materials, 2022, 51: 588-598.
[20]Lithiophilic Magnetic Host Facilitates Target-Deposited Lithium for Practical Lithium-Metal Batteries.Small, 2023, 19 (21) : DOI:10.1002/smll.202207764.
科研项目:
1.2021/04-2024/03, “长江学者奖励计划”青年学者,Q2020130,主持
2. 2022/09-2025/09, 湖南省科技创新领军人才,2022RC3049,主持
3. 2023/07-2026/07, 湖南省重点研发计划,2023GK2015, 先进硅基负极材料关键技术,主持
4. 2023/03-2026/03,中南大学三门县人民政府科技创新合作,主持5. 2022/09-2024/08,中伟新材料股份有限公司,钠离子电池正极及其前驱体开发项目,主持
6. 2022.01-2024.06,与电子十三所横向课题,CQFP 陶瓷四边引线扁平外壳金属化界面腐蚀机理分析及解决,主持
7. 2019/01-2022/12,国家自然科学基金面上项目,51874362, 高容量多孔合金负极材料结构稳定化设计及其增强储钠性能研究,主持
8. 2020/01-2024/12,国家自然科学基金重点项目,51932011,低成本、高比能、长寿命大规模储能二次电池新系统研发,参与(第2)
9. 2018/01-2021/12,湖南省自然科学基金杰出青年基金项目,2018JJ1036,全固态锂离子电池钒基电极材料优化设计及其电化学性能研究,主持
10. 2018/10-2021/09,湖湘青年英才,2018RS3010,主持
11. 2020/03-2023/03,“芙蓉学者奖励计划”青年学者,主持
12. 2014/01-2016/12,教育部新世纪优秀人才计划,NCET-13-0594,主持
13. 2014/01-2016/12,国家自然科学基金青年基金,51302323,锂电池钒-基氧化物正极材料的结构优化及其增强嵌锂行为研究,主持
14. 2018/05-2021/02,国家重点研发计划,2018YFB0104202,高安全长寿命高比能锂/硫动力电池关键技术研发与装车示范,子课题负责人
15. 2013/01-2015/12,国家高新技术发展计划(863项目),SS2013AA110106,磷酸盐基正极/离子液体-聚合物电解质/碳纳米硅复合负极新型高容量锂离子动力电池的研发,参与