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Office:Room 927, Building 3, Nanshan Zhiyuan Chongwen Park, Shenzhen
Tel: 0755-88011384
E-mail: zengyq@sustech.edu.cn
Dr. Yuqiang Zeng joined the School of Microelectronics at Southern University of Science and Technology in June 2023. He received a B.S. in Thermal Energy and Power Engineering from Huazhong University of Science and Technology in 2013, and a PhD in Mechanical Engineering at Purdue University in 2018. His dissertation focused on tuning thermal transport in thin films. He then worked as a postdoctoral associate at Lawrence Berkeley National Laboratory, before joining the faculty at SUSTech. His research focuses on thermal management of microelectronics, thermal solution for energy storage devices, micro/nanoscale thermal sensing & imaging, and electronics packaging and heterogeneous integration.
Thermal management of microelectronics
Smart Battery Thermal Management
Micro/Nanoscale Thermal Sensing
Electronics Packaging and Heterogeneous Integration
2013-2018, Ph.D., Purdue University
2009-2013, B.S., Huazhong University of Science and Technology
2023.6 – Present, Assistant Professor, Southern University of Science and Technology
2018.12 – 2023.5, Postdoc, Lawrence Berkeley National Laboratory
Guangdong High-level Talents, 2023
Shenzhen Overseas High-Caliber Talent Award (C), 2023
Travel Grants,Purdue University,2018
Graduate School Summer Research Grants,Purdue University,2018
Research ID: JDV-8634-2023
[1] Z. Liu#, Y. Zeng#, J. Tan#, H. Wang#, Y. Zhu, X. Geng, P. Guttmann, X. Hou, Y. Yang, Y. Xu, P. Cloetens, D. Zhou, Y. Wei, J. Lu, J. Li, B. Liu, M. Winter, R. Kostecki, Y. Lin, X. He, Revealing the degradation pathways of layered Li-rich oxide cathodes, Nat. Nanotechnology, 1-10 (2024).
[2] Y Fu, L Chen, Y Guo, Y Shi, Y Liu, Y Zeng*, Y Lin*, D Luo*, Pyramid Textured Photonic Films with High‐Refractive Index Fillers for Efficient Radiative Cooling, Adv. Sci. 11, 2404900 (2024)
[3] Y. Zeng, F. Shen, B. Zhang, J. Lee, D. Chalise, Q. Zheng, Y. Fu, S. Kaur, S. D. Lubner, V. S. Battaglia, B. D. McCloskey, M. C. Tucker, and R. S. Prasher, Nonintrusive thermal-wave sensor for operando quantification of degradation in commercial batteries, Nat. Commun. 14 (1), 8203 (2023).
[4] Y. Zeng#, B. Zhang#, Y. Fu, F. Shen, Q. Zheng, D. Chalise, R. Miao, S. Kaur, S. D. Lubner, M. C. Tucker, V. Battaglia, C. Dames, and R. S. Prasher, Extreme fast charging of commercial Li-ion batteries via combined thermal switching and self-heating approaches, Nat. Commun. 14 (1), 3329 (2023).
[5] Y. Zeng, D. Chalise, Y. Fu, J. Schaadt, S. Kaur, V. Battaglia, S. D. Lubner, and R. S. Prasher, Operando Spatial Mapping of Lithium Concentration Using Thermal-Wave Sensing, Joule 5, 2195 (2021). (Free Featured Article; Spotlighted in Trends in Chemistry)