张航

副教授

所在系所:工程热物理研究所

电子邮件:zhang.hang@sjtu.edu.cn

通讯地址:365英国上市公司官网365英国上市公司官网A楼732室

个人简介
科研工作
荣誉奖励
其他

教育背景

2018 - 2023     新加坡国立大学         材料科学与工程     博士

2015 - 2018     北京航空航天大学     材料科学与工程     硕士

2011 - 2015     华中科技大学            功能材料                学士


工作经历

2026 - 至今     365英国上市公司官网         365英国上市公司官网      长聘教轨副教授

2025 - 2026     多伦多大学            机械与工业工程学院      博士后

2023 - 2025     新加坡国立大学     材料科学与工程学院      博士后

研究方向

1. 热能转换与存储:热再生电化学循环等

2. 大规模储能系统:液流电池、金属空气电池等

3. 电化学能量转换:二氧化碳捕获与转化、氢气制备与存储、废弃锂电池回收

4. 电化学系统微纳多孔介质的传热传质


常年招收博士研究生(每年1名)、硕士研究生(每年2名)、博士后及科研助理。欢迎工程热物理、电化学、材料、能源动力等背景的同学联系与交流。


学术兼职

担任《Carbon Neutrality》、《eScience》、《Nano Research Energy》等期刊青年编委


科研项目

2026-2029     国家自然科学基金优秀青年基金(海外)     主持

代表性论文专著

·  H. Zhang, Z. Wang, H. Li, M. Salla, Y. Song, S. Huang, S. Huang, X. Wang, K. Liu, G. Xu, J. Huang, C.-W. Qiu*, Q. Wang*, Continuous electricity generation from solar heat and darkness. Joule 7, 1515 (2023). 

·  H. Zhang, Z. Fu, R. Zhang*, Q. Zhang, H. Tian, D. Legut, T. C. Germann, Y. Guo, S. Du, J. S. Francisco*, Designing flexible 2D transition metal carbides with strain-controllable lithium storage. Proc. Natl. Acad. Sci. U. S. A. 114, E11082–E11091 (2017).

·  H. Zhang, D. Gen Lek, S. Huang, Y. Mei Lee, Q. Wang*, Efficient low-grade heat conversion and storage with an activity-regulated redox flow cell via thermally regenerative electrochemical cycle. Adv. Mater. 34, 2202266 (2022). 

·  H. Zhang‡, F. Zhang‡, J. Yu, M. Zhou, W. Luo, Y. M. Lee, M. Si, Q. Wang*, Redox Targeting‐Based Thermally Regenerative Electrochemical Cycle Flow Cell for Enhanced Low‐Grade Heat Harnessing. Adv. Mater. 33, 2006234 (2021). 

·  Y. Song, L. Xia, M. Salla, S. Xi, W. Fu, W. Wang, M. Gao, S. Huang, S. Huang, X. Wang, X. Yu, T. Niu, Y. Zhang, S. Wang, M. Han, M. Ni*, Q. Wang*, H. Zhang*, A Hybrid Redox-Mediated Zinc-Air Fuel Cell for Scalable and Sustained Power Generation. Angew. Chemie Int. Ed. 63, e202314796 (2024).

·  H. Zhang‡, S. Huang‡, M. Salla, J. Zhuang, M. Gao, D. G. Lek, H. Ye, Q. Wang*, A Redox-Mediated ZincAir Fuel Cell. ACS Energy Lett. 7, 2565–2575 (2022). 

·  Y. Song, H. Zhang*, Z. Fu, Z. Gu, L. Xia, H. Guo, J. Zhuang, Y. He, L. Meng, Z. W. J. Ang, Q. Wang*, Redox-Mediated Aluminum–Air Fuel Cells with Suppressed Hydrogen Evolution for Durable Power Generation. Adv. Energy Mater. e71004 (2026).

·  Y. Cai‡, H. Zhang‡, T. Wang, S. Xi, Y. Song, S. Rong, J. Ma, Z. Han, C.T.J. Low, Q. Wang*, Y. Ji*, Directional regulation on single-molecule redox-targeting reaction in neutral zinc-iron flow batteries. Joule 9, 101768 (2025).

·  F. Zhang‡, H. Zhang‡, M. Salla, N. Qin, M. Gao, Y. Ji, S. Huang, S. Wu, R. Zhang, Z. Lu*, Q. Wang,* Decoupled Redox Catalytic Hydrogen Production with a Robust Electrolyte-Borne Electron and Proton Carrier. J. Am. Chem. Soc. 143, 223–231 (2021). 

·  S. Huang‡, H. Zhang‡, M. Salla, J. Zhuang, Y. Zhi, X. Wang, Q. Wang*, Quinone-based Electrolyte System Design for Sustainable Aqueous Organic Redox Flow Batteries. Nat. Commun. 13, 4746 (2022).

·  J. Cao‡, H. Zhang‡, K. Yu, H. Qu, B. Liu, Q. Wang*, F. Zhang*, J. Yan*, Chelation Mediated Outer‐Sphere Electron Transfer for High‐Voltage and Long‐Lifespan Neutral Zinc‐Iron Flow Batteries, Adv. Energy Mater. e70849 (2026).

·  Z. Wang, H. Zhang*, Q. Wang*, Solvent-assisted thermogalvanic cell for enhanced low-grade heat harvesting over an extended temperature range. Nano Energy 134, 110515 (2025).

·  H. Zhang, C.-W. Qiu*, Q. Wang*, Charging-free thermally regenerative electrochemical cycle for electricity generation from daytime solar heat and nighttime darkness, Nano Res. Energy 2, 1 (2023).

·  J. Zhang, J. Li, K. Yu, Q. Wang, H. Zhang*, F. Zhang*, J. Yan*, Charging-free redox flow battery for continuous high-power electricity generation from low-grade heat. Nano Res. Energy 4, e9120176 (2025)

·  H. Zhang, Q. Wang, Thermally regenerative electrochemical cycle for low-grade heat harnessing. Chem. Phys. Rev. 2, 021304 (2021). 

·  H. Zhang, Z. Wang, Q. Wang*, Evaluation of Thermally Regenerative Electrochemical Cycle for Thermal-to-Electrical Energy Conversion. Appl. Phys. Lett. 122, 20 (2023).

·  H. Zhang‡, Y. Cheng‡, D. G. Lek, Q. Wang*, Membrane-free Redox Flow Cell Based on Thermally Regenerative Electrochemical Cycle for Concurrent Electricity Storage, Cooling and Waste Heat Harnessing of Perovskite Solar Cells. J. Power Sources 548, 232081 (2022).

·    S. Liu, Y. C. Xiao, D. Kim, Z. Guo, E. Grignon, Y. Li, I. Munroe, H. Zhang, J. Zhu, …, D. Sinton, Redox-decoupled electrolysis for direct air capture of CO2, Nature Chemical Engineering 2026 3, 261–271 (2026).



软件版权登记及专利

·       Qing Wang, Hang Zhang, Yuxi Song. "A metal-feeding method for metal-air fuel cells." U.S. Patent Application No. 18/852,282 (2025)

·       张瑞丰, 张航, 富忠恒 "一种电化学极化条件下二维材料理想强度的计算方法.", CN108932378A  (2018)


国家高层次青年人才(海外)

上海市白玉兰人才计划青年项目

国家优秀自费留学生奖学金

International Workshop on Thermo-electrochemical Devices 2026, invited talk

243rd ECS Meeting - The Electrochemical Society, oral presentation

2nd International Conference on Materials for Humanity (MH 22),oral presentation