
丁佳 教授、博导、国家级青年人才
Email: jiading@tju.edu.cn
单位:先进金属材料研究所
教育背景:
2012/8-2015/8 加拿大阿尔伯塔大学/纳米技术国家实验室 博士
2009/9-2012/7 中国科学院上海光学精密机械研究所 硕士
2005/9-2009/7 华中科技大学/武汉大学 学士/双学位
工作经历:
2019/3-至今 天津大学 材料科学与工程学院 教授/博导
2018/11-2019/3 天津大学 材料科学与工程学院 副教授
2015/9-2018/9 美国能源部前沿研究中心/纽约州立大学 博士后研究员
研究方向
电化学储能材料与器件(锂/钠离子电池,金属-硫电池,固态电池)
新能源催化材料与器件(绿电制氢,燃料电池,电化学合成)
标志性成果
长期从事新能源二次电池材料、绿色氢能电催化材料与电化学储能器件相关研究。提出“瞬态组装”纳米/亚纳米材料合成理念,开发原子结构精确能源材料先进制造技术。发表论文100余篇,以第一和通讯作者发表Science、Chem. Rev.、Nature Commun. (4)、Adv. Mater. (8)、J. Am. Chem. Soc.、Angew. Chem. Int. Ed. (3)、Energy Environ. Sci. (2)、Adv. Energy Mater. (5)、Adv. Funct. Mater. (2)、ACS Nano等顶刊论文,ESI高被引论文17篇。总引用15000余次,H因子58。授权国家发明专利、美国发明专利10余项,专利转化多项;出版教指委教材和学术专著3部。研究成果被诺奖获得者及全球20余位院士团队等高度评价和充分肯定,被新华社、科技日报、Chemistryworld、C&EN、Nanowerk等媒体报道。连续三年入选全球前2%“终身影响力”顶尖科学家榜单。担任Nat. Chem.、Nat. Commun.、Adv. Mater.等20余个国际学术期刊审稿人;兼任Carbon Energy等高水平国产学术期刊(青年)编委。
所指导的博士/硕士研究生曾获得博士后创新人才支持计划(A档)、国家自然科学基金青年学生基础研究项目、中国科协青年人才培育工程、中国材料研究学会博士生专项、全国职业规划大赛天津大学金奖、天津市优秀学生、师昌绪特等奖学金、博士/硕士研究生国家奖学金、天津大学优秀博士/硕士学位论文等荣誉。
主要承担项目
国家重点研发计划政府间合作重点专项,2025-2028
国家自然科学基金面上项目,2024-2027
企业横向技术开发项目,2023-2026
国家自然科学基金面上项目,2021-2024
国家级高层次人才计划青年项目,2020-2022
代表性论文
1. J. Feng, Z. Yang, W. Song*, T. Zhang, X. Yang, K. Qian, X. Wang, H. Wang, J. Ding*, W. Hu*, Ultrafine iridium‐oxide solid solutions for efficient acidic water oxidation, Angew. Chem. Int. Ed., 2026, e7808386.
2. S. Wang, W. Song*, R. Zhao, K. Qian, H. Shi, X. Yang, J. Ding*, W. Hu*, Synergistic Regulation of charge and ion transport in Mn‐rich NASICON cathodes toward high‐energy sodium‐ion batteries, Advanced Functional Materials, 2026, e76968.
3. J. Ding, T. Zhang, W. Song, Z. Li, X. Wang, X. Yang, J. Feng, M. Wen, Y. Chen, Z. Wu*, J. Zhou*, B. Liu*, W. Hu*, Transient assembly of precision-tuned platinum-skin intermetallic catalysts for fuel cells, Science, 2026, 393 (6807), 178-183.
4. J. Luo, Y. Liu, J. Zhang, Z. Liu, Z. Guo, K. Qian, Z. Li, P. Huang, C. Wang, J. Zeng, R. Liu, Y. Chen*, J. Ding*, W. Hu*, Reducing P-O bond covalency in polyanionic groups to increase the intrinsic electronic conductivity in sodium positive electrodes, Nature Communications, 2026, 17: 7490.
5. W. Song, H. Shi, J. Feng, K. Qian, Q. Dong, Z. Sun, J. Ding*, W. Hu*, Prelithiation for lithium‐ion batteries: material and process innovations, Advanced Materials, 2026, e73290.
6. T. Zhang, W. Song, X. Wang, P. Qiao, J. Feng, H. Shi, H. Wang, X. Yang, J. Zhang, J. Ding*, W. Hu*, Lattice coupling enables gradient strain tuning toward platinum skin at intermetallic nanocatalysts for boosting hydrogen electrocatalysis, Advanced Materials, 2026, 38, e11865.
7. W. Chen, W. Zeng, Z. Chen, Y. Zou, C. Zhang, S. Ye, J. Ding*, X. Han*, W. Hu*, Liquid metal dynamic interface enabled reverse hydrogen spillover boosting electrocatalytic nitrate reduction, Angew. Chem. Int. Ed. 2026, 65, e202516997.
8. Z. Wen, R. Zhao, T. Tian, T. Zhang, X. Wang, X. Yang, W. Song, Y. Chen, J. Ding*, W. Hu, Molecular stitching in polysaccharide precursor for fabricating hard carbon with ultra-high plateau capacity of sodium storage, Advanced Materials, 2025, 2420251.
9. W. Song, Z. Wen, X. Wang, K. Qian, T. Zhang, H. Wang, J. Ding*, W. Hu, Unsaturation degree of Fe single atom site manipulates polysulfide behavior in sodium-sulfur batteries, Nature Communications, 2025, 16:2795.
10. X. Yang, W. Song, K. Liao, X. Wang, X. Wang, J. Zhang, H. Wang, Y. Chen, N. Yan, X. Han*, J. Ding*, W. Hu, Cohesive energy discrepancy drives the fabrication of multimetallic atomically dispersed materials for hydrogen evolution reaction. Nature Communications, 2024, 15:8216.
11. Z. Huang, M. Li, X. Yang, T. Zhang, X. Wang, W. Song, J. Zhang, H. Wang, Y. Chen, J. Ding*, W. Hu, Diatomic iron with pseudo-phthalocyanine coordination environment for highly efficient oxygen reduction over 150,000 cycles. Journal of the American Chemical Society, 2024, 146, 24842−24854.
12. J. Luo, J. Zhang, Z. Guo, Z. Liu, C. Wang, H. Jiang, J. Zhang, L. Fan, H. Zhu, Y. Xu, R. Liu, J. Ding*, Y. Chen*, W. Hu*, Coupling anti‐site defect and lattice tensile stimulates facile isotropic Li‐ion diffusion, Advanced Materials, 2024, 36, 2405956.
13. W. Song, X. Yang, T. Zhang, Z. Huang, H. Wang, J. Sun, Y. Xu, J. Ding*, W. Hu*, Optimizing potassium polysulfides for high performance potassium-sulfur batteries, Nature Communications, 2024, 15:1005.
14. Z. Song, Y. Liu, Z. Guo, Z. Liu, Z. Li, J. Zhou, W. Liu, R. Liu, J. Zhang, J. Luo, H. Jiang, J. Ding*, W. Hu, Y. Chen*, Ultrafast synthesis of large-sized and conductive Na3V2(PO4)2F3 simultaneously approaches high tap density, rate and cycling capability, Advanced Functional Materials, 2024, 2313998.
15. W. Song, C. Xiao, J. Ding*, Z. Huang, X. Yang, T. Zhang, D. Mitlin*, W. Hu*, Review of carbon support coordination environments for single metal atom electrocatalysts (SACS), Advanced Materials, 2024, 2301477.
16. X. Yang, W. Song, T. Zhang, Z. Huang, J. Zhang, J. Ding*, W. Hu, Review of emerging atomically precise composite site‐based electrocatalysts, Advanced Energy Materials, 2023, 13, 2301737.
17. X. Wang, J. Ding*, W. Song, X. Yang, T. Zhang, Z. Huang, H. Wang, X. Han*, W. Hu, Cation vacancy clusters in Ti3C2Tx MXene induce ultra-strong interaction with noble metal clusters for efficient electrocatalytic hydrogen evolution, Advanced Energy Materials, 2023, 2300148.
18. J.Lin, J. Ding, H. Wang, X. Yang, X. Zheng, Z. Huang, W. Song, J. Ding*, X. Han*, W. Hu, Boosting energy efficiency and stability of Li‐CO2 battery via synergy between Ru atom cluster and single atom Ru‐N4 site in electrocatalyst cathode, Advanced Materials, 2022, 2200559.
19. J. Ding*, H. Zhang, W. Fan, C. Zhong*, W. Hu, D. Mitlin*, Review of emerging potassium-sulfur batteries, Advanced Materials, 2020, 1908007.
20. J. Ding, Z. Liu, X. Liu, B. Liu, J. Liu, Y. Deng, X. Han, W. Hu, C. Zhong*, Tunable periodically ordered mesoporosity in palladium membranes enables exceptional enhancement of intrinsic electrocatalytic activity for formic acid oxidation, Angew. Chem. Int. Ed. 2020, 59, 5092-5101.
21. J. Ding, H. Zhang, H. Zhou, J. Feng, X. Zheng, C. Zhong*, E. Paek, W. Hu, D. Mitlin*, Sulfur grafted hollow carbon spheres for potassium ion battery anodes, Advanced Materials, 2019, 1900429.
22. J. Ding, Z. Liu, X. Liu, J. Liu, Y. Deng, X. Han, C. Zhong*, W. Hu*, Mesoporous decoration of freestanding palladium nanotube arrays boosts the electrocatalysis capabilities toward formic acid and formate oxidation, Advanced Energy Materials, 2019, 1900955.
23. J. Ding*, W. Hu, E. Paek, D. Mitlin*, Review of hybrid ion capacitors: from aqueous to lithium to sodium, Chemical reviews, 2018, 118, 6457-6498.
24. J. Ding, Y. Lin, J. Liu, J. Rana, H. Zhang, H. Zhou, I. Chu, K. Wiaderek, F. Omenya, N. Chernova, K. Chapman, L. Piper, S. Ong, S. Whittingham*, KVOPO4: A new high-capacity multielectron Na‐ion battery cathode, Advanced Energy Materials, 2018, 8, 1800221.
25. J. Ding*, H. Zhou, H. Zhang, L. Tong, D. Mitlin*, Selenium impregnated monolithic carbons as free‐standing cathodes for high volumetric energy lithium and sodium metal batteries, Advanced Energy Materials, 2018, 8, 1701918.
26. J. Ding*, H. Zhou, H. Zhang, T. Stephenson, Z. Li, D. Karpuzov, D. Mitlin*, Exceptional energy and new insight with a sodium–selenium battery based on a carbon nanosheet cathode and a pseudographite anode, Energy & Environmental Science, 2017, 10, 153-165.
27. J. Ding, H. Wang, Z. Li, K. Cui, D. Karpuzov, X. Tan, A. Kohandehghan, D. Mitlin*, Peanut shell hybrid sodium ion capacitor with extreme energy–power rivals lithium ion capacitors, Energy & Environmental Science, 2015, 8, 941-955.
28. J. Ding, H. Wang, Z. Li, A. Kohandehghan, K. Cui, Z. Xu, B. Zahiri, X. Tan, E. Lotfabad, B. Olsen, D. Mitlin*, Carbon nanosheet frameworks derived from peat moss as high performance sodium ion battery anodes, ACS nano, 2013, 7, 11004-11015.
代表性专利
1. 丁佳,文振壮,陈亚楠 ZL 2024 1 0093286.6
2. 丁佳,赵芮光,陈亚楠 CN 202410549035.4
3. 丁佳,杨昕怡 CN202411083562.7
4. 丁佳,刘宇航,陈亚楠,胡文彬 CN202211085538
5. Stanley Whittingham, Jia Ding, US Patent 11,894,550
6. Stanley Whittingham, Jia Ding, US Patent 11,289,700
7. David Mitlin, Jia Ding, US Patent 10,256,050.
8. David Mitlin, Jia Ding, US Patent 10,950,866.
9. David Mitlin, Jia Ding, US Patent 10,707,026
10. David Mitlin, Jia Ding, Zhi Li, U.S. Patent App. 14/885,966.(已转让)
招生招聘
欢迎有志于从事新能源材料、锂/钠离子电池、绿色氢能、电催化等方向的青年才俊申报博士后、硕博士研究生!也欢迎对储能技术感兴趣的本科生加入课题组科学研究!