全职导师


邓涛

副教授

taodeng@sjtu.edu.cn

地址:低碳主楼A401/智慧能源东部行政楼410

电话:64355111—6181

个人主页:https://www.researchgate.net/profile/Tao-Deng-3

教育背景
  • 2016-2020 美国马里兰大学 化学与生物分子工程系博士
  • 2014 -2016 美国莱斯大学 化学与生物分子工程系硕士
  • 2010 - 2014天津大学 生物化工系/化工学院学士
工作经历
  • 2023 -至今 欧宝app官方网站下载-中英国际低碳学院/智慧能源创新学院, 长聘教轨副教授
  • 2022 - 2023 加州大学-劳伦斯伯克利国家实验室, 博士后 (合作导师:Marca Doeff
  • 2021 - 2022 马里兰大学-化学和生物分子工程系, 博士后 (合作导师:Chunsheng Wang)
  • 2017 - 2018西北太平洋国家实验室, 研究助理 (合作导师:Ji-Guang Zhang)
研究方向
  • 固态电池与界面电化学
  • 新型电池电解液设计与应用
  • AI+多尺度模拟与能源材料

课题组实验室位于闵行校区/临港低碳学院,计划长期招收化学、化工、材料、能源动力等方向的本科生、硕博生、博士后以及留学生,有固态电池、计算化学(DFT/MD)以及AI应用研究经验的优先,欢迎感兴趣者邮件联系. (2025-2026年度计划招收1名博士,2名博士后

代表性论文专著

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, Nature Chemistry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%),连续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14500余次(Google Scholar),H指数为45

  • T. Zhou, L. Chen, H. Zhang, R. Li, S. Zhang, B. Ma, J. Wang, J. Huang, H. Zhu, J. Hua, Z. Liu, H. Zhang, K. Wan, L. Chen,T. Deng*,X. Fan*,Tuning interfacial solvent orientation for high-voltage Lithium-ion batteries,Chem,2025, accepted.
  • Y. Ma, H. Zhang, S. Duan, B. Ma, S. Zhang, L. Lv, L. Chen, T. Zhou, Y. Li, R. Guo*, R. Li*,T. Deng*,X. Fan*,Integrated Solvation Chemistry Enables High Energy Li Metal Batteries,J. Am. Chem. Soc.,2025,doi.org/10.1021/jacs.5c13371.
  • 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. (共一,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 LiNiO2cathode 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 K0.6CoO2microspheres 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 K0.65Fe0.5Mn0.5O2microspheres as superior cathode for high-energy potassium-ion batteries,Adv. Funct. Mater.,2018, 1800219.
教学工作

储能原理与技术,2024年秋季

学术兼职
  • Carbon Neutrality (Springer Nature, 青年编委)
  • Battery Energy (Wiley,青年编委)
  • EcoEnegy (Wiley,青年编委)
荣誉奖励
  • Journal of Materials Chemistry A Emerging Investigators, 2026

  • 科睿唯安全球高被引科学家-化学学科,2025

  • Excellent Young Scholar Award for Carbon Neutrality, 2025

  • 斯坦福大学&Elsevier 全球前2%顶尖科学家年度榜单,2024/2025

  • 科睿唯安全球高被引科学家-交叉学科,2024

  • 上海市海外高层次青年项目入选者,2023

  • 国家海外高层次青年项目入选者,2022

  • Dean's Doctoral Research Award (runner-up), University of Maryland, 2020

  • Ann G. Wylie Dissertation Fellowship, University of Maryland, 2020

  • Outstanding Graduate Assistant Awards, University of Maryland, 2020

  • Battery500 Young Investigators Awards, Battery500 Consortium, 2019

  • Future Faculty Fellow, A. James Clark School of Engineering, 2019

  • 国家优秀自费留学生奖学金,驻美国大使馆教育处,2019

  • Sengers PhD Candidacy Graduate Scholarship, Department of CHBE, 2019

  • Engie Chuck Edwards Memorial Research Fellowship, University of Maryland,2018

  • Dean's Fellowship for New PhDs, University of Maryland, 2016

  • Rice Graduate Fellowship (with tuition coverage), Rice University, 2014

Baidu
map