
吴小雪,女,校聘副研究员(讲师),理学博士,办公地点:第三学科楼A315,联系方式:wuxiaoxue178@163.com;17606835215。
主要研究方向:专注高性能锂电池技术的开发与新机理探索,包括:固态电解质设计与界面调控,锂电池隔膜改性及功能化,锂金属负极人工SEI层构筑,锂电池回收技术等。
科研项目(近5年主持/参与):
· 上海市自然科学基金(主持)
· 上海交通大学晨星博士后青年科学基金(主持)
· 国家自然科学基金面上项目(主要参与人)
发表论文/著作情况:以第一作者/通讯作者发表10余篇。
1. Xiaoxue Wu, et al. Towards Circular Energy: Exploring Direct Regeneration for Lithium-Ion Battery Sustainability. Adv. Mater. 2024, 36, 2403818.
2. Xiaoxue Wu, et al. Towards Sustainable All Solid-State Li-metal Batteries: Perspectives on Battery Technology and Recycling Processes. Adv. Mater. 2023, 35, 2301540.
3. Xiaoxue Wu (共同通讯), et al. Bio-inspired multi-component polymer electrolytes for wide-temperature solid-state lithium batteries. Mater. Today 2025, 90, 86-95.
4. Xiaoxue Wu, et al. Polymer backbone-enabled solvation regulation of high-concentration ether electrolytes for high-voltage quasi-solid-state lithium metal batteries. Nano Energy 2025, 146, 111537.
5. Xiaoxue Wu, et al. Solid Electrolytes Reinforced by Infinite Coordination Polymer Nano-Network for Dendrite Free Lithium Metal Batteries. Energy Storage Mater. 2021, 41, 436-447.
6. Xiaoxue Wu, et al. Metal Organic Framework Reinforced Polymer Electrolyte with High Cation Transference Number to Enable Dendrite-Free Solid State Li Metal Conversion Batteries. J. Power Sources 2021, 501, 229946.
7. Xiaoxue Wu (共同通讯), et al. Polymer Electrolytes Reinforced by 2D Fluorinated Filler for All-Solid-State Li-Fe-F Conversion-Type Lithium Metal Batteries. Nano Research 2023, 16, 8469-8477.
8. Xiaoxue Wu, et al. Progress, Key Issues, and Future Prospects for Li Ion Battery Recycling. Global Chall. 2022, 6, 2200067.
9. Xiaoxue Wu, et al. A Fluorescent Carbon-Dots-based Mitochondria-Targetable Nanoprobe for Peroxynitrite Sensing in Living Cells. Biosens. Bioelectron. 2017, 90, 501-507.
获奖与荣誉:
· 上海交通大学博士后激励计划
· 北京理工大学优秀毕业生
· 北京理工大学优秀研究生