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教师名录

付超鹏

研究员
所属二级机构:凝固科学与技术研究所
通讯地址:材料ju11net九州体育H楼209
电子邮箱:chaopengfu@sjtu.edu.cn
办公电话:021-54740709
付超鹏,上海交通大学研究员、博士生导师,入选国家高层次人才计划(青年项目)。2013-2016年于英国牛津大学从事博士后研究工作,2012年新加坡南洋理工大学博士后,2011年和2006年分别获湖南大学博士和学士学位。研究方向先后获中组部、国家自然基金委、上海市科委等项目资助。 研究领域主要包括材料加工和电化学储能材料与器件的开发应用,在铝电池(铝空气电池,铝离子储能电池等)、高纯超细氧化铝、铝合金表面处理及腐蚀与防护方面以及能源电催化等方面开展了卓有成效的工作。目前在Advanced Materials, Advanced Functional Materials,Angew等国际知名学术期刊发表学术论文100余篇,授权发明专利20多项,并多次受邀在国际学术会议做口头报告。 ?
教育经历
  • 2002年-2006年,湖南大学 学士
  • 2006年-2011年,湖南大学 博士
工作经历
  • 2012年-2013年,新加坡南洋理工大学,博士后
  • 2013年-2016年,英国牛津大学,博士后
研究方向
  • 金属能源材料:铝空气电池、铝离子电池、铝二氧化碳电池等
  • 高纯超细氧化铝材料
  • 铝合金表面处理及腐蚀与防护
  • 能源电催化
研究情况

付超鹏,上海交通大学研究员、博士生导师,入选国家高层次人才计划(青年项目)。2013-2016年于英国牛津大学从事博士后研究工作,2012年新加坡南洋理工大学博士后,2011年和2006年分别获湖南大学博士和学士学位。研究方向先后获中组部、国家自然基金委、上海市科委等项目资助。 研究领域主要包括材料加工和电化学储能材料与器件的开发应用,在铝电池(铝空气电池,铝离子储能电池等)、高纯超细氧化铝、铝合金表面处理及腐蚀与防护方面以及能源电催化等方面开展了卓有成效的工作。目前在Advanced Materials, Advanced Functional Materials,Angew等国际知名学术期刊发表学术论文100余篇,授权发明专利20多项,并多次受邀在国际学术会议做口头报告。  

论文信息
  • 2. Chaopeng Fu*, InSituElectropolymerization-InducedInterfacial Electrostatic Regulation Enables Dendrite-Free Aluminum Anodes for Ultralong-Life Rechargeable Aluminum Batteries, Advanced Functional Materials, 2026; 36:e75274.
  • 1. Chaopeng Fu*, Robust Covalent Organic Frameworks ComprisingAccessible Catalytic Sites Enable Fast-Charging andLong-Cycling Aluminum–Sulfur Batteries, Advanced Materials, 2026; e74063
  • Xinlong Zhang, .... Chaopeng Fu*, Dynamic and Hierarchical Hydrogen-Bonding NetworkEnables Self-Healing Polymer Electrolyte for Ultra-LongCycle Life Rechargeable Aluminum Batteries, Adv. Funct. Mater. 2025, e14984.
  • Min Jiang, Chaopeng Fu,* et al., Challenges and Strategies of Low-Cost Aluminum Anodes for High-Performance Al-Based Batteries, Advanced Materials, 2021, 2102026. (IF=30.8)
  • Pengyu Meng, Chaopeng Fu,* et al., A Low-cost and Air‐Stable Rechargeable Aluminum-Ion Battery, Advanced Materials, DOI: 10.1002/adma.202106511 (IF=30.8)
  • 12. Min Jiang, Chaopeng Fu,* et al., Integrated and Binder-Free Air Cathodes of Co3Fe7 Nanoalloy and Co5.47N Encapsulated in Nitrogen-Doped Carbon Foam with Superior Oxygen Reduction Activity in Flexible Aluminum-Air Batteries, Advanced Science, 2020, 2000747 (IF=15.8)
  • 15. Zhaihui Yang, ... Chaopeng Fu*, Intermolecular Hydrogen Bonding Networks Stabilized Organic Supramolecular Cathode for Ultra-High Capacity and Ultra-Long Cycle Life Rechargeable Aluminum Batteries, Angew. Chem. Int. Ed. 2024, e202403424
  • Wenqi Tang, ... Chaopeng Fu*, Ammonium salt-assisted preparation of porous high-purity γ-Al2O3 with a high specific surface area, Ceramics International 50 (2024) 7255–7265
  • 7. Min Jiang, Chaopeng Fu,* et al., Challenges and Strategies of Low-Cost Aluminum Anodes for High-Performance Al-Based Batteries, Advanced Materials. 2022, 34, 2102026. (IF=30.8)
  • Ruiqi Cheng, .... Chaopeng Fu*, f-p-d Gradient Orbital Coupling Induced Spin State Enhancement of Atomic Fe Sites for Efficient and Stable Oxygen Reduction Reaction, Adv. Funct. Mater. 2025, 2425138 (IF=18.5)
  • 17. Ruiqi Cheng, ... Chaopeng Fu*, Dimensional Upgrade Induced Enriched Active Sites and Intensified Intramolecular Electron Donor–Acceptor Interaction to Boost Oxygen Reduction Electrocatalysis, Adv. Funct. Mater. 2024, 2406717
  • 18. Ruiqi Cheng, ... Chaopeng Fu*, Rational Design of Organic Electrocatalysts for Hydrogen and Oxygen Electrocatalytic Applications, Adv. Mater. 2024, 2402184
  • 6. Pengyu Meng, Chaopeng Fu,* et al., A Low-cost and Air‐Stable Rechargeable Aluminum-Ion Battery, Advanced Materials 2022, 34, 2106511 (IF=30.8)
  • 1. Yibo Wang, Chaopeng Fu* et al., Regulation of Atomic Fe-Spin State by Crystal Field and Magnetic Field for Enhanced Oxygen Electrocatalysis in Rechargeable Zinc-Air Batteries, Angew. Chem. Int. Ed. 2023, e202304229 (IF=16.823)
  • Ruiqi Cheng, .... Chaopeng Fu*, High-entropy optimizing d-orbital electronic configuration of metal organic framework for high-current-density anion exchange membrane water electrolysis, Nano Energy 134 (2025) 110529 (IF=16.8)
  • Min Jiang, Chaopeng Fu,* et al., Rationalization on high-loading iron and cobalt dual metal single atoms and mechanistic insight into the oxygen reduction reaction, Nano Energy, 2022, 93, 106793 (IF=17.9)
  • 2. Zhaohui Yang, Chaopeng Fu* et al., Phenoxazine Polymer-based p-type Positive Electrode for Aluminum-ion Batteries with Ultra-long Cycle Life, Angew. Chem. Int. Ed. 2023, e202216797 (IF=16.823)
  • Min Jiang, Chaopeng Fu,* et al., Integrated and Binder-Free Air Cathodes of Co3Fe7 Nanoalloy and Co5.47N Encapsulated in Nitrogen-Doped Carbon Foam with Superior Oxygen Reduction Activity in Flexible Aluminum-Air Batteries, Advanced Science, 2020, 2000747 (IF=15.8)
  • 14. Biao Ran, Chaopeng Fu*, High-Entropy Oxides for Rechargeable Batteries, Adv. Sci. 2024, 2401034
  • 10. Fei Wang, Chaopeng Fu,* et al., Atomically Dispersed Iron Active Sites Promoting Reversible Redox Kinetics and Suppressing Shuttle Effect in Aluminum-Sulfur Batteries, Nano-Micro Lett. 2022, 14:169 (IF=26.6)
  • 3. Ruiqi Cheng, Chaopeng Fu* et al., Electronic structure regulation in the design of low-cost efficient electrocatalysts: From theory to applications, Nano Energy, 2023, 115, 108718 (IF=17.6)
  • 8. Min Jiang, Chaopeng Fu,* et al., Rationalization on high-loading iron and cobalt dual metal single atoms and mechanistic insight into the oxygen reduction reaction, Nano Energy, 2022, 93, 106793 (IF=17.9)
  • 5. Pengyu, Meng, Chaopeng Fu* et al., Air?Stable Binary Hydrated Eutectic Electrolytes with Unique Solvation Structure for Rechargeable Aluminum?Ion Batteries, Nano-Micro Lett. 2023, 15:188 (IF=26.6)
荣誉信息
  • 1. 2017年国家高层次青年人才
  • 6. 第十八届全国大188bet官网“挑战杯”特等奖指导老师
  • 2. 2019年上海交通大学优秀班主任
  • 3. 2020年上海交通大学优秀班主任
  • 4. 材料ju11net九州体育第五届青年教师“立德树人”教学竞赛二等奖
  • 5. 上海交通大学2023优异学士学位论文指导老师
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