教师姓名:李维杰
职称:教授
教师拼音名称:liweijie
性别:女
所在单位:粉末冶金研究院
学历:博士研究生毕业
学位:工学博士学位
毕业院校:University of Wollongong
在职信息:在职
招生学科:材料科学与工程

个人简介
李维杰,博士,教授,博士生导师, 国家级青年人才。2016年博士毕业于澳大利亚伍伦贡大学,随后在伍伦贡大学做博士后和DECRA研究员,参与了辽宁星空钠电普鲁士蓝生产线建设。曾获澳大利亚DECRA优秀青年,日本振兴协会JSPS,小米学者等荣誉称号,2024-2026连续被选入全球2%顶尖科学家。主要从事新能源材料与器件的研究,围绕高能量密度二次电池的界面稳定性与金属沉积行为,开展从材料到电解质再到无负极电池体系的系统性研究。以第一作者或通讯作者在Adv. Mater.、Energy Environ. Sci.、ACS Nano、Nano Lett.、Angew. Chem. Int. Ed.、 Adv. Funct. Mater.、Adv. Energy Mater.、 Sci. Adv. 等国际著名学术期刊上发表SCI论文50余篇。Google 引用 11000次, H因子53,15篇论文为ESI近十年高被引论文。
1. 项目情况:曾承担澳大利亚研究理事会、澳大利亚同步辐射中心合作项目在内的科研项目5项,共计100余万澳元;参与过钠离子商业化研究的大项目(500万澳元),作为研发具有商业前景的钠离子正极材料的负责人;
1)国家自然科学基金海外优青项目,主持;
2)国家自然科学基金(青年)项目,主持;
3)湖南省自然科学基金(青年)项目,主持;
4)澳大利亚研究理事会探索(Discovery Project)项目,项目名称:Carbon-free Energy Storage and Conversion Using Ammonia as a Mediator,项目编号:DP210102215,主持。
5)澳大利亚研究理事会青年学者项目(DECRA),项目名称:Long life sodium ion batteries by optimizing initial coulombic efficiency,项目编号:DE180101478,主持。
6)澳大利亚同步辐射中心, 项目名称:Investigation on the effect of alkaline ions intercalation into V2O5 on the performance for Zn-ion storage, 主持。
7)伍伦贡大学校级基金, 项目名称:Boosting electrochemical performance of Mn-based layered metal oxides as cathodes for potassium ion storage,主持。
8)伍伦贡大学-北航大学联合中心项目,项目名称:开发新型的水系锌离子电池的电解液,主持。
2. 学术荣誉:
2024-2026年评为全球2%顶尖科学家,获2018 澳大利亚未来青年学者(DECRA)奖,澳大利亚优秀青年学者游学奖,日本学术振兴会(JSPS)fellowship。
3. 学术兼职:
1) 主题特刊编辑: Research Topic “Advanced Carbon Chemistry for Rechargeable Batteries” in Frontier in Chemistry.
2) 主题特刊编辑:Research Topic “Oriented Nanostructures for Energy Conversion and Storage” in Frontiers in Energy Research.
3) 主题特刊编辑: Research Topic “Phosphorus-based Materials for Energy Storage” in Ploymers.
4) 主题特刊编辑: Research Topic “Research on the Electrochemical performance of Sodium-ion Battery” in Electrochem.
5) 主题特刊编辑: Research Topic “Transition metal-based materials for energy storage and energy conversion” in Rare Metals.
6)杂志编委成员: Advances in Materials.
7) 青年编委:《Carbon Energy》、《Infomat》、《Journal of Materials Science & Technology》、《Energy & Environmental Materials》杂志的青年编委。
4. 学生培养情况
1)已毕业博士在澳大利亚卧龙岗大学、郑州警察学院、宁德时代公司等工作;
2)已毕业硕士在宁德时代、CTL等公司工作;
3)指导的毕业硕士生在Adv. Funt. Mater.、Nano. lett.、J. Mater. Chem. A等杂志每人发表2-3篇论文;
4)指导的研究生多次获西南铝、小米等校级奖学金。
常年招收硕士、博士及本博计划的本科生,欢迎有兴趣的同学加我本课题组。

›A Hydrophobic Nanoconfined Interface for Anode-Free Aqueous Zinc Batteries.Nano. Lett., 2026
›Dielectric morphology engineering: a hydrogel electrolyte with a balanced local electric field to enhance the migration number of zinc ions.Chem. Commun., 2026, 62
›Tuning the performance of zinc hexacyanoferrate cathodes via ferrocyanide/ferricyanide precursor selection for high-e?ciency zinc-ion storage.Chem. Commun., 2026, 26: 3023.
›Magneto-Electric Coupling Effects Enable Structurally and Electrochemically Stable Interface for Long-Lasting Anode-Free Sodium Metal Batteries.Nano Lett., 2026, 26: 6972?6982.
›Balancing sodiophilicity and mechanical stability: Sn-engineered multicomponent alloy interfaces for anode-free sodium metal batteries.Chem. Commun., 2026, 62 (44) : 11192–11196.
›Stress-adaptive sodiation enabled by a sodiophilic solid-solution interface for long-life anode-free sodium metal batteries.Energy Storage Materials, 2026, 90
›Multicomponent alloy–engineered interfaces for magnetic regulation of sodium deposition in anode-free sodium metal batteries.Energy Storage Materials, 2026, 86
›Research Progress and Prospects of Low-Temperature Zinc-Ion Batteries.Batteries & Supercaps, 2026, 9
›Wang Xin, Li Weijie, Sc/Mg Co-Doping in Na3Zr2Si2PO12 Solid-State Electrolytes Enables Outstanding Performance of Sodium Metal Batteries.Advanced Science, 2025
›Zewei Hu, Weijie Li*, Enhancing Low-temperature Durability and Sodium-ion Transport of Anode-free Sodium Metal Batteries through Utilizing the Solvent Adsorption Separator.Energy&Environmental Science, 2025
›Chen Fuliang(硕士), Weijie Li*, A Zn@Sn powder anode for side reaction-resistant and stable aqueous zinc-ion batteries (邀稿).Chem. Commun., 2025
›Qingqing Zheng(硕士), Weijie Li, Multifunctional Separator Design for Regulating Zn2+ ion Flux and Zn Stripping in Anode-Less Zn Metal Batteries(accepted).Nano Letters, 2025, 25 (31) : 11961.
›Zewei Hu, Weijie Li, In-situ integration of rapid ion-diffusion interlayers on Cu current collector towards ultra-fast anode-free sodium metal batteries.ACS Nano, 2025
›Zhenwei Tang(24级硕士), Weijie Li, Anode-Free Solid-State Rechargeable Batteries: Mechanisms, Challenges, and Design Strategies(邀稿).Batteries & Supercaps, 2024
›Sihao Wu(本科生), Weijie Li, Modification of NASICON electrolyte in solid sodium-ion batteries—A short review(邀稿).J. Cent. South Univ., 2025, 31 (12) : 4510-4535.
›Jiayao Wang (23级硕士), Weijie Li, Prussian blue analogues for aqueous zinc-ion batteries: Recent process and perspectives.J. Mater. Sci. Tech., 2025, 221: 302-320.
›Qingqing Zheng(22级硕士), Weijie Li, Altering the Zn2+ Migration Mechanism Enables the Composite Hydrogel Electrolytes with HighZn2+ Conduction and Superior Anti-Dehydration.Adv. Funct. Mater., 2025
›Liyang Liu, Weijie Li*, Electrolyte Regulation Methods for Improving the Cycle-Life of Zinc Metal Anodes.Journal of Materials Chemistry A, 2024
›Xinyi Wang, Weijie Li*, An electron-losing regulation strategy for stripping modulation towards a highly reversible Zn anode.Chemical Science, 2024
›Qingqing Zheng(硕士), Weijie Li*, Recent advances and perspectives of 1D/2D carbon materials for high-performance flexible zinc ion batteries (Invited Review)).Journal of Material Chemistry A, 2024
›Haiying Lu, Weijie Li*, The Electrolyte Solvation and Interfacial Chemistry for Anode-free Sodium Metal Batteries (邀稿).Chinese Journal of Structural Chemistry, 2024
›Liyang Liu, Weijie Li*, Electric Double Layer Regulator Design through a Functional Group Assembly Strategy towards Long-lasting Zinc Metal Batteries.Angewandte Chemie International Edition, 2024
›Zewei Hu, Weijie Li*, Current Progress of Anode-free Rechargeable Sodium Metal Batteries: Origin, Challenges, Strategies and Perspectives.Advanced Functional Materials, 2024
›Chao Han, Weijie Li*, Jian Liu*, Tri-functional carbon nanocages coated CoNi electrocatalyst with micro twinning structure for high performance electrochemical devices.Chemical Engineering Journal, 2023 (481)
›Liyang Liu, Jiantie Xu*, Weijie Li*, Salt Anion Amphiphilicity-Activated Electrolyte Cosolvent Selection Strategy toward Durable Zn Metal Anode.ACS Nano, 2023
›Xin Wang, Weijie Li*, High Energy Density Aqueous Zinc–Chalcogen (S, Se, Te) Batteries: Recent Progress, Challenges, and Perspective.Advanced Energy Materials, 2023
›Ding Yuan, Yuhai Dou*, Weijie Li*, Defect activation of atomically thin electrocatalysts for the oxygen evolution reaction.Cell Reports Physical Science, 2023 (4)
›Xinyi Wang, Weijie Li*, The protective effect and its mechanism for electrolyte additives on the anode interface in aqueous zinc-based energy storage devices (Invited review)).Nano Materials Science, 2022
›Jinyan Xiong, Gang Cheng*, Weijie Li*, Oxygen Vacancy and Metallic Silver Site Coinjection Associates Photocatalytic CO2 Reduction upon Mesoporous NH2–TiO2 Nanoparticles Assembly (Invited Review)).Solar RRL, 2022, 6
›Xiao Xiao, Yongji Gong*, Weijie Li*, Jun Chen*, An ultrathin rechargeable solid-state zinc ion fiber battery for electronic textiles (highly cited)).Science Advances, 2021
›Liying Liu, Zhicong Shi*, Shulei Chou*, Weijie Li*, A P3-Type K1/2Mn5/6Mg1/12Ni1/12O2 Cathode Material for PotassiumIon Batteries with High Structural Reversibility Secured by the Mg? Ni Pinning Effect.ACS Appl. Mater. Interfaces, 2021 (13) : 28369?28377.
›Zhijia Zhang, Weijie Li*, Effects of carbon on electrochemical performance of red P and carbon composite as anode for sodium ion batteries.Journal of Materials Science & Technology, 2021 (68) : 140-146.
›Weijie Li*, Shixue Dou, Shulei Chou.Strategies for boosting carbon electrocatalysts for the oxygen reduction reaction in non-aqueous metal–air battery systems (Invited review)).J. Mater. Chem. A, 2021 (9) : 6671–6693.
›Weijie Li*, Shulei Chou*, Three-Dimensional Electronic Network Assisted by TiN Conductive Pillars and Chemical Adsorption to Boost the Electrochemical Performance of Red Phosphorus.ACS Nano, 2020
›Weijie Li*, Shulei Chou*, Stress Distortion Restraint to Boost the Sodium Ion Storage Performance of a Novel Binary Hexacyanoferrate.Advanced Energy Materials, 2020
›Weijie Li*, Shulei Chou*, Shixue Dou.Electron Delocalization and Dissolution-Restraint in Vanadium Oxide Superlattices to Boost Electrochemical Performance of Aqueous Zinc-Ion Batteries.Advanced Energy Materials, 2020
›Weijie Li*, Shulei Chou*, Huakun Liu.Chemical Properties, Structural Properties, and Energy Storage Applications of Prussian Blue Analogues (Invited Review, highly cited)).Small, 2019
›Weijie Li, Yong Mook Kang*, Shulei Chou*, Remarkable Enhancement in Sodium-Ion Kinetics of NaFe2(CN)6 by Chemical Bonding with Graphene.Small Methods, 2018 (2)
›Weijie Li, Shulei Chou, Shixue Dou.Commercial prospects of existing cathode materials for sodium ion storage (Invited review news)).Advanced Energy Materials, 2017
›Weijie LI, Chao Han, Zhen Li*, Shulei Chou*, Graphite-Nanoplate-Coated Bi2 S3 Composite with High-Volume Energy Density and Excellent Cycle Life for Room-Temperature Sodium-Sulfide Batteries.Chemistry-A European Journal, 2016 (22) : 509.
›Weijie Li, Shulei Chou*, Shixue Dou.Significant enhancement of the cycling performance and rate capability of the P/C composite via chemical bonding (P–C).J. Mater. Chem. A, 2016 (4) : 505-511.
›Weijie Li, Shulei Chou, Shixue Dou.Multifunctional conducing polymer coated Prussian blue-based cathode for sodium-ion batteries with superior performance via a facile and one-step chemistry approach.Nano Energy, 2015
›Weijie Li, Shulei Chou*, Shixue Dou.Cobalt phosphide as a new anode material for sodium storage.Journal of Power Sources, 2015 (294) : 627-632.
›Weijie Li, Shulei Chou*, Shixue Dou.A new, cheap, and productive FeP anode material for sodium-ion batteries.Chemical Communications, 2015
›Weijie Li, Shulei Chou, Shixue Dou.Facile Method To Synthesize Na-Enriched Na1+xFeFe(CN)6 Frameworks as Cathode with Superior Electrochemical Performance for Sodium-Ion Batteries.Chemistry of Materials, 2015
›Weijie Li, Shulei Chou, Shixue Dou.Sn 4+ x P 3 @ Amorphous Sn-P Composites as Anodes for Sodium-Ion Batteries with Low Cost, High Capacity, Long Life, and Superior Rate Capability.Advanced Materials, 2014
›Weijie Li, Shulei Chou, Shixue Dou.Simply Mixed Commercial Red Phosphorus and Carbon Nanotube Composite with Exceptionally Reversible Sodium-ion Storage (Highly cited)).Nano Letters, 2013

›一种梯度锌基复合界面电极及其制备方法和应用. 申请日期:2026-09-20, 申请号:202611444948.5
›一种无负极钠金属电池负极片及应用, 申请号:202511193173.4
›一种高熵普鲁士蓝正极材料的制备方法及应用, 申请号:202510887781.9
›钠金属电池及其高熵电解液, 申请号:202510613265.7
›一种无负极钠电池改性集流体及其制备方法和应用, 申请号:202410055465.0
›富含孪晶结构的过渡族金属电催化剂及其制备方法和应用, 授权号:ZL202310209877.0.
›一种多金属三维阵列集流体及其在钠电池中的应用, 授权号:ZL202610781764.1.
›一种醚基聚合物电解质及其制备方法和在钠二次电池中的应用, 授权号:ZL202511762327.7.
›一种锌离子电池的复合凝胶电解质、制备方法及其应用, 授权号:ZL202310865436.6.

›中南大学拔尖岗,2023-10-28
›全球2%顶尖科学家,2024-11-01
›澳大利亚DECRA优秀青年,2018-07-01
›全球2%顶尖科学家,2025-11-01
›日本振兴协会JSPS fellowship,2021-02-16
›澳大利亚纳米联盟优秀青年学者,2017-04-05
›优秀班导师,2026-03-17
›小米青年,2026-01-05
›Nano Material Science 杂志最佳论文,2025-12-02

中南大学 › 教授
University of Wollongong › 研究员(Research fellow)
University of Wollongong › 助理研究员
Donggook University

江苏省颗粒学会能源颗粒专委会委员
Infomat 青年编委
Energy&Environmental Materials 青年编委
Journal of Material Science &Technology青年编委
Carbon Energy 青年编委
