唐伟副研究员

址:上海市东川路800号电信群楼1-501

话:+86 21 34207430

箱:terry_tang@sjtu.edu.cn

研究中心:半导体器件与宏微集成实验室

个人主页:http://smil.sjtu.edu.cn/

个人简介


博士生导师。2011年毕业于吉林大学,获得学士学位;2017年毕业于上海交通大学,获得博士学位(导师郭小军教授)。2017.12-2020.6年任上海交通大学电子信息与电气工程学院思政教师(讲师),期间继续从事研究工作(“双肩挑”)2020.6年加入上海交通大学电子工程系,2023.1任副研究员。曾于2014-20152019-2020在香港理工大学Feng Yan教授课题组从事研究工作。

目前已发表论文60余篇,其中以第一/通讯作者在npj Flexible Electronics, IEEE Electron Device LettersACS Sensors等国际主流学术期刊发表SCI论文10余篇, IEDM论文3篇。参加国际学术会议并陈述口头报告5次。授权中国专利10余项,美国专利2项。担任IEEE CAD-TFT会议TPC委员。



研究领域

半导体器件

集成电路

显示技术

智慧农业

研究方向

1. 薄膜晶体管三维集成技术

2. 半导体生物化学传感芯片

3. 健康预警与即时检测技术

获奖情况

第八届全国大学生集成电路创新创业大赛“华大九天杯”中荣获全国总决赛二等奖(指导老师:绳伟光、唐伟)

第七届全国大学生集成电路创新创业大赛“华大九天杯”中荣获全国总决赛三等奖(指导老师:唐伟、何谷峰)

第十八届“挑战杯”全国大学生课外学术科技作品竞赛全国总决赛二等奖(指导老师:郭小军、唐伟、张永)

2023年“知行杯”上海市大学生社会实践项目大赛二等奖(指导老师:唐伟、陈杰、张雪洪等)

科研项目

主持国家自然科学基金青年项目、面上项目

主持上海市农委重点项目课题、江苏省重点研发计划课题






重要论文
  1. J. Zheng, J. Li*, T. Lin, Z. Ren, F. Wang, Z. Shi, H. Yu, W. Jiang*, and W. Tang*, Amplification-Free and Label-Free Rapid Detection of Staphylococcus Aureus Using Solution-Gated Graphene Transistor-Based DNA Biosensor with Hybridization Enhancement by Interface Engineering, Chem. Eng. J., 495: 153329, 2024.

  2. Z. Shi#, F. Chang#, Y.Jia, J. Li, Y. Qiu, J. Miao, W. Jiang, X. Guo, X. Han*, W. Tang*, Classifying and Understanding of Dairy Cattle Health Using Wearable Inertial Sensors with Random Forest and Explainable Artificial Intelligence, IEEE Sensors Lett., 2024, 8 (3): 1-4.

  3. H. Yu, H. Zhang, Z. Liu, L. Feng, Y. Su, J. Li*, W. Tang*, and F. Yan*, Recent advances in field-effect transistor-based biosensors for label-free detection of sars-cov-2, Small Sci., p. 2300058, 2024.

  4. X. Xi#, W. Tang#, D. Wu, C. Shen, W. Ji, J. Li, Y. Su, X. Guo, R. Liu*, F. Yan*, All-carbon solution-gated transistor with low operating voltages for highly selective and stable dopamine sensing, ACS Sensors, 8(3): 1211-1219, 2023.

  5. W. Tang#, Z. Lin#, Z. Wang#, Z. Lin, L. Feng, Z. Liu, X. Li, P. D. Ye, X. Guo*, M. Si*, Monolithic 3D Integration of Vertically Stacked CMOS Devices and Circuits with High-Mobility Atomic-Layer-Deposited In2O3 n-FET and Polycrystalline Si p-FET: Achieving Large Noise Margin and High Voltage Gain of 134 V/V, 2022 IEEE International Electron Devices Meeting (IEDM), 2022.
  6. W. Tang#, Y. Fu#, Y. Huang, Y. Li, Y. Song, X. Xi, Y. Yu, Y. Su, F. Yan*, X. Guo*. Solution processed low power organic field-effect transistor bio-chemical sensor of high transconductance efficiency, npj Flex. Electron., 6(18):1-18, 2022.
  7. Y. Tang, W. Tang*, Y. Song, L. Han, Y. Huang, R. Liu, Y. Su, and X. Guo*, Low-temperature packaging of ion-sensitive organic field-effect transistors on plastic for multiple ion detection. IEEE J. Electron Devices Soc. 9:1237-1242, 2021.
  8. L. Han, S. Chen, L. a. Deng, Y. Song, Y. Huang, S. Li, M. Li, W. Tang*, Y. Su, and X. Guo*, Through-plastic-via three-dimensional integration for integrated organic field-effect transistor bio-chemical sensor chip. IEEE Electron Device Lett. 42(4), 569-572, 2021.
  9. W. Tang, J. Zhao, Y. Huang, L. Ding, Q. Li, J. Li, P. You, F. Yan, X. Guo*, Bias stress stability improvement in solution-processed low-voltage organic field-effect transistors using relaxor ferroelectric polymer gate dielectric, IEEE Electron Device Lett., 38 (6): 748-751, 2017.
  10. W. Tang, C. Jiang, Q. Li, W. Hu, L. Feng, Y. Huang, J. Zhao, S. Chen, X. Guo*, Low-voltage pH sensor tag based on all solution processed organic field-effect transistor, IEEE Electron Device Lett., 37 (8): 1002-1005, 2016.
  11. W. Tang#, L. Feng#, P. Yu, J. Zhao, X. Guo*, Highly efficient all-solution-processed low-voltage organic transistor with a micrometer-thick low-k polymer gate dielectric layer, Adv. Electron. Mater., 2 (5): 1500454, 2016.
  12. W. Tang, J. Zhao, L. Feng, P. Yu, W. Zhang, X. Guo*, Top-gate dry-etching patterned polymer thin-film transistors with a protective layer on top of the channel, IEEE Electron Device Lett., 36 (1): 59-61, 2015.
  13. W. Tang, J. Li, J. Zhao, W. Zhang, F. Yan, X. Guo*, High-performance solution-processed low-voltage polymer thin-film transistors with low-k/high-k bilayer gate dielectric, IEEE Electron Device Lett., 36 (9): 950-952, 2015.