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曾玉强
助理教授
zengyq@sustech.edu.cn

曾玉强博士于2023年6月加入南方科技大学深港微电子学院担任助理教授。此前,曾博士在2013年取得华中科技大学学士学位,并于2018年获得美国普渡大学博士学位(博士导师:Amy Marconnet),加入南科大前曾在美国劳伦斯伯克利国家实验室任博士后研究员,合作导师为前国家实验室副主任Ravi Prasher。课题组主要研究方向包括电子器件热管理,微纳尺度热传感与热成像,储能器件的热解决方案,量子器件的声子调控等。以第一作者或合作作者于Nature Energy, Joule, Nature Commun., Adv. Funct. Mater., Energy Storage Mater., Appl. Phys. Rev.和Int. J. Heat Mass Transf.等国际高水平期刊发表论文十余篇。


招聘信息

本课题组常年招聘博士后、科研助理,招收博士生、硕士生、本科实习生,有意应聘者请将简历发送至曾博士邮箱,以“招聘岗位+应聘者姓名”为题。

联系方式:zengyq@sustech.edu.cn

 

教育经历

2018年8月,美国普渡大学,机械工程,博士学位

2013年6月,华中科技大学,热能与动力工程,学士学位

 

工作经历

2023年6月至今,南方科技大学,助理教授

2018年12月至2023年5月,美国劳伦斯伯克利国家实验室,博士后研究员

 

获得奖项

Travel Grants,Purdue University,2018

Graduate School Summer Research Grants,Purdue University,2018

 

研究方向

电子器件热管理

微纳尺度热传感与热成像

储能器件的热解决方案

量子器件的声子调控

 

代表性论文

[1] 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).

[2] 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)  

[3] Y. Zeng, D. Chalise, S. D. Lubner, S. Kaur, and R. S. Prasher, A Review of Thermal Physics and Management inside Lithium-Ion Batteries for High Energy Density and Fast Charging, Energy Storage Mater. 41, 264 (2021).

[4] Y. Zeng, C.-L. Lo, S. Zhang, Z. Chen, and A. Marconnet, Dynamically Tunable Thermal Transport in Polycrystalline Graphene by Strain Engineering, Carbon 158, 63 (2020).

[5] Y. Zeng, T. Li, Y. Yao, T. Li, L. Hu, and A. Marconnet, Thermally Conductive Reduced Graphene Oxide Thin Films for Extreme Temperature Sensors, Adv. Funct. Mater. 29, 1901388 (2019).

[6] Y. Zeng and A. Marconnet, Reevaluating the Suppression Function for Phonon Transport in Nanostructures by Monte Carlo Techniques, J. Appl. Phys. 125, 034301 (2019).

[7] Y. Zeng and A. Marconnet, Tuning the Anisotropy of In-Plane Thermal Conduction in Thin Films by Modulating Thickness, Phys. Rev. Appl. 9, 011001 (2018).

[8] Y. Zeng and A. Marconnet, A Direct Differential Method for Measuring Thermal Conductivity of Thin Films, Rev. Sci. Instrum. 88, 044901 (2017).

[9] Q. Zheng, D. Chalise, M. Jia, Y. Zeng, M. Zeng, M. Saeidi-Javash, A. N. M. Tanvir, G. Uahengo, S. Kaur, J. E. Garay, T. Luo, Y. Zhang, R. S. Prasher, and C. Dames, Structured Illumination with Thermal Imaging (SI-TI): A Dynamically Reconfigurable Metrology for Parallelized Thermal Transport Characterization, Appl. Phys. Rev. 9, 021411 (2022). (Scilight; Featured Article)

[10] T. Li, A. D. Pickel, Y. Yao, Y. Chen, Y. Zeng, S. D. Lacey, Y. Li, Y. Wang, J. Dai, Y. Wang, B. Yang, M. S. Fuhrer, A. Marconnet, C. Dames, D. H. Drew, and L. Hu, Thermoelectric Properties and Performance of Flexible Reduced Graphene Oxide Films up to 3,000 K, Nat. Energy 3, 148 (2018).