二次电池储能材料及器件,包括1) 新型固态电池、2) 锂(钠)离子/金属电池、3) 新型电解液/功能添加剂设计等,主要研究能源材料的电化学性质、失效机理以及相关界面形成机制与稳定性。近 5 年在 Nature, Nature Nanotechnology, Nature Energy, Joule, Chem, JACS, Advanced Materials等国际知名期刊上发表论文超过70 篇,累积超过30 篇入选 ESI 高被引或热点论文 (Highly Cited Papers, Top 1/0.1%),入选科睿唯安全球高被引科学家以及斯坦福大学&Elsevier 全球前2%顶尖科学家年度榜单。论文五年内总引用 13000 余次 (Google Scholar),H 指数为 44。
- J. Zheng, J. Wang, R. Li*, C. Sun, S. Jiang, D. Lu, B. Ma, X. Tao, T. Deng*, X. Fan*, Modulating Interfacial Solvent Aggregation Chemistry to Enable Low-Temperature Sodium-ion Battery, Adv. Mater., 2025, DOI: 10.1002/adma.202506550.
- J. Wang, S. Zhang, R. Li*, L. Chen, H. Zhang, B. Ma, S. Jiang, T. Zhou, J. Huang, H. Zhu, L. Li, L. Chen, T. Deng*, X. Fan*, Surface chemical coordination stabilizes Ni-rich cathode for high-energy Li-metal batteries, J. Am. Chem. Soc., 2025, 147, 9396-9406.
- T. Deng, C. Wang, H. Wan, A. Li, X. He, Z. Wang, L. Cao, X. Fan, C. Wang, A universal design of lithium anode via dynamic stability strategy for practical solid-state batteries, Angew. Chem. Int. Ed., 2025, 137, e202418811.
- T. Zhou, J. Wang, L. Lv, R. Li*, L. Chen, S. Zhang, H. Zhang, B. Ma, J. Huang, B. Wu, L. Chen, T. Deng*, X. Fan*, Anion-π interaction and solvent dehydrogenation control enable high-voltage lithium-ion batteries, Energy Environ Sci., 2024, 17, 9185-9194.
(Before Joining SJTU:)
- T. Deng†, X. Ji†, L. Zou, O. Chiekezi, X. Fan, L. Cao, T. R. Adebisi, H. Chang, H. Wang, B. Li, X. Li, C. Wang, D. Reed, J.-G. Zhang, V. Sprenkle, C. Wang*, X. Lu*, Interfacial engineering enabled practical low-temperature sodium metal battery, Nat. Nanotechnol., 2022, 17, 269-277.
- N. Zhang†, T. Deng†, S. Zhang, C. Wang, L. Chen, C. Wang*, X. Fan*, Critical review on low-temperature Li-ion/metal batteries, Adv. Mater., 2021, 34, 2107899. (共同第一作者, hot paper, <0.1%)
- T. Deng†, L. Cao†, X. He†, A.-M. Li, D. Li, J. Xu, S. Liu, P. Bai, T. Jin, L. Ma, M. A. Schroeder, X. Fan, C. Wang*. In situ formation of polymer-inorganic solid-electrolyte interphase for stable polymeric solid-state lithium metal batteries, Chem, 2021, 7, 1-17.
- T. Deng, X. Ji, Y. Zhao, L. Cao, S. Li, S. Hwang, C. Luo, P. Wang, H. Jia, X. Fan, X. Lu, D. Su, X. Sun, C. Wang*, J.-G. Zhang*, Tuning the anode-electrolyte interface chemistry for garnet-based solid-state Li metal batteries, Adv. Mater., 2020, 32, 2000030. (highly cited paper, <1%)
- T. Deng, X. Fan*, L. Cao, J. Chen, S. Hou, X. Ji, L. Chen, S. Li, X. Zhou, E. Hu, D. Su, X.-Q. Yang, C. Wang*, Designing in-situ formed interphases enables highly reversible cobalt-free LiNiO2 cathode for lithium metal/ion batteries, Joule, 2019, 3, 2550-2564. (highly cited paper, <1%)
- T. Deng†, X. Fan†, C. Luo, J. Chen, L. Chen, S. Hou, N. Edison, X. Zhou, C. Wang*, Self-templated formation of P2-type K0.6CoO2 microspheres for high reversible potassium-ion batteries, Nano Lett., 2018, 18, 1522−1529.
- T. Deng†, X. Fan†, J. Chen, L Chen, C. Luo, X. Zhou, J. Yang, S. Zheng, C. Wang*, Layered P2-type K0.65Fe0.5Mn0.5O2 microspheres as superior cathode for high-energy potassium-ion batteries, Adv. Funct. Mater., 2018, 1800219.