周丹
个人信息
Personal information
职称:副研究员
硕士生导师
毕业院校:北京科技大学
学科:材料科学与工程
学历:研究生
学位:博士
所在单位:高精尖学院
联系方式:17801036375(微信同号)
2023-12 本科生优秀导师
2024-12 本科生优秀导师
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- [1] Bagasse-Derived Hard Carbon Anode with a Synergistic Sodium Storage Mechanism Induced by Temperature Gradient for High-Performance Sodium-Ion Batteries.[J].Small,2026,22,e13253.
- [2] Regulation of carrier transport at grain boundaries of Na3Zr2Si2PO12 solid electrolyte with ionic conductor filler for superior solid-state sodium batteries.[J].Advanced Functional Materials,2026,e19793.
- [3] Sodium halide solid electrolytes for all-solid-state sodium batteries: advances, challenges, strategies, and prospects.[J].Energy Storage Materials,2026,88,105042.
- [4] Novel sodium rare earth silicate solid electrolyte with grain boundary electronic insulation for ultra-durable solid-state sodium metal batteries.[J].Advanced Materials,2025,38,e14634.
- [5] Novel sodium-rare-earth-silicate-based solid electrolytes for all-solid-state sodium batteries: structure, synthesis, conductivity, and interface.[J].Advanced Energy Materials,2025,15,e03468.
- [6] Dendrite-Free Zn Anode Enabled by Dual-Function Itaconic Acid Electrolyte Additive Via Controllable Acidic Environment and In Situ Interfacial Protective Layer for Durable Aqueous Zinc Ion Batteries.[J].Advanced Functional Materials,2025,35,2424398.
- [7] Achieving dendrite-free zinc deposition by large-size anion-reinforced solvated structures for highly reversible zinc anode.[J].Energy Storage Materials,2024,73,103865.
- [8] Achieving Highly Reversible and Dendrite-Free Zinc Anode Using Dual-Function 1,2-DACH Electrolyte Additive Via Reconstructed Solvation Structure and In Situ Interfacial Protective Layer.Advanced Functional Materials,2026,36,e13335.
- [9] Vacancy- mediated LaCl3-based superionic conductors for all-solid-state sodium batteries.Journal of Energy Chemistry,2025,11,864–871.
- [10] Realizing dendrite-free Zn anode using an efficient sulfone-based electrolyte additive for high-performance aqueous zinc-ion batteries.[J].Journal of Energy Chemistry,2025,109,455–465.
