2023年2月--至今,复旦大学,工程与应用技术研究院、智能机器人与先进制造创新学院,青年副研究员
2020年10月--2022年12月,瑞士洛桑联邦理工大学,Laboratory of Nanoscience for Energy Technologies,博士后
2015年9月--2020年6月,荷兰代尔夫特理工大学,博士(微电子学)
2013年7月--2015年8月,半导体照明国家重点实验室,热与可靠性工程师
[1] 2025年上海市人民政府发展研究中心重点专项,感存算一体化助力城市智能化发展研究,2025-03至2025-09,在研,主持
[2] 2024年教育部海外优秀博士后引才专项,2025-01至2027-12,在研,主持
[3] 2024年特种发光科学与技术全国重点实验室开放课题,二维材料/宽禁带半导体混合维度异质结极紫外光电探测机理及器件研究,2025-01至2026-12,在研,主持
[4] 江苏省常州市重大技术需求“揭榜挂帅”科技攻关项目,新能源汽车用 SiC MOSFET功率器件和模块关键技术研发 2023.10-2026.09,在研,子课题负责人
[5] 复旦大学医工结合项目,多光源-跨模态龋齿检测系统的研发和应用,2023-12 至 2025-12,在研,主持
[6] 复旦大学综合繁荣项目,光电人机交互平台建设,2023-12-2024-12,结题,参与
[7] 复旦大学FDUROP望道项目,基于范德华异质结光电突触的人工光神经网络构建及其视觉感知应用,2024-6 至 2026-5,在研,指导教师
[8] Swiss National Science Foundation,国际,Photogating of graphene for electrokinetic energy harvesting and active plasmonic devices,2020-01至2023-12,结题,参与
[9] Delft University of Technology-Beijing Research Center,国际,High performance devices based on advanced materials (2DMat),2015-09至2020-06,结题,主持
代表性论文和论著
[1] Tang, H.,* Shi, W., Jiang, W., Wang, G., , Tang, M., Cai, Z., Li. R., Wu, S., Zhang, G., Li. J.,* Wavelength-Selective Synaptic Devices Based on Graphdiyne/WSe2 for Multi-Color Image Recognition and Neuromorphic Computing. Chemical Engineering Journal, 2025, 517, 164215.
[2] Tang, H.,* Shi, W., Ding, Y., Qi, J., Wu, S., Liu, W., Wang, G., Fan, J., Zhang, R.,* Zhang, G. Effects of self-limiting oxide layer on optical and electronic properties of WTe2 for optoelectronic applications. Applied Surface Science, 2025, 684, 161913.
[3] Tang, H., Anwar T., Jang M., and Tagliabue G., Light-Intensity Switching of Graphene/WSe2 Synaptic Devices. Advanced Science, 2024, 2309876.
[4] Shi, W., Ding, Y., Fang, S., Zhou, H., Qi, J. Fan, J., Zhang, R.,* Zhang, G., Tang, H.* High-performance type II WSOx/WS2-based heterojunction photodetectors. Applied Surface Science, 2025, 683, 161848.
[5] Yang, Z., Wang, X., Zuo, Y., Tang, Z., Guo, B., Zhang, J., Tang, H.,* Zhang, R.,* Fan, X., Zhang, G., Fan, J.*, Prediction of Temperature-Dependent Stress in 4H-SiC Using In Situ Nondestructive Raman Spectroscopy Characterization. Laser & Photonics Reviews, 2024, 2401033.
[6] Yang, Z., Wang, X., Chen, W., Tang, H.,* Zhang, R.,* Fan, X., Zhang, G., Fan, J.*, Residual Stress Characterization in Microelectronic Manufacturing: An Analysis Based on Raman Spectroscopy. Laser & Photonics Reviews, 2024, 2301300.
[7] Tang, H., Menabde, S., Anwar T., Kim J., Jang M., and Tagliabue G., Photo-modulated optical and electrical properties of graphene, Nanophotonics, 2022, 11(5), 917–940.
[9] Tang, H., Hu, D., Cui Z., Ye, H., and Zhang, G., Effects of Defect and Temperature on the Mechanical Performance of WS2: A Multiscale Analysis.Journal of Physical Chemistry C, 2021,125 (4), 2680-2690.
[10] Tang, H., Sacco, L.N., Vollebregt, S., Ye, H., Fan, X. and Zhang, G., Recent advances in 2D/nanostructured metal sulfide-based gas sensors: mechanisms, applications, and perspectives. Journal of Materials Chemistry A, 2020, 8, 24943-24976.
[11] Tang, H., Li, Y., Sokolovskij, R., Sacco, L., Zheng, H.Z., Ye, H.Y., Yu, H.Y., Fan, X., Ren, T.L. and Zhang, G., Ultra-high Sensitive NO2 Gas Sensor based on Tunable Polarity Transport in CVD-WS2/IGZO p-N Heterojunction.ACS Applied Materials & Interfaces, 2019, 11(43), 40850-40859.
[12] Tang, H., Li, Y., Ye, H., Gao, C., Tao, L.Q., Tu, T., Gou, G., Chen, X., Fan, X., Ren, T.L. and Zhang, G., High-performance humidity sensor using Schottky-contacted SnS nanoflakes for noncontact healthcare monitoring. Nanotechnology, 2019, 31(5).
[13] Tang, H., Tan, C., Yang, H., Zheng, K., Li, Y., Ye, H., Chen, X., Fan, X., Ren, T. and Zhang, G., Tunable electronic and optical properties of the WS2/IGZO heterostructure via an external electric field and strain: a theoretical study. Physical Chemistry Chemical Physics, 2019, 21(27), 14713-14721.
[14] Tang, Z., Zhao, S., Li, J., Zuo, Y., Tian, J., Tang, H.,* Fan, J.*, Zhang, G. Optimizing the chemical vapor deposition process of 4H-SiC epitaxial layer growth with machine-learning-assisted multiphysics simulations. Case Studies in Thermal Engineering, 2024, 59, 104507.
[15] Tian, J., Tang, Z., Tang, H.,* Fan, J.*, Zhang, G. Multi-objective optimization of 4H-SiC homoepitaxy chemical vapor deposition process fusing support vector machine with multiphysics simulations. Materials Today Communications, 2025, 43(5), 111721
*通讯作者
专利列表
已授权专利
[1] 唐红雨;樊嘉杰;叶怀宇;樊学军;张国旗. 一种多功能气敏动态测试装置,实用新型,中国,专利申请号:CN201821778552.5,已授权。
[2] 唐红雨;李磊;祁高进;方涛;樊嘉杰;钱诚;王明明;樊学军;张国旗. 一种高效稳定的紫外净化系统,实用新型,中国,专利申请号:CN201721430713.7,已授权,已权利转移。
[3] 唐红雨; 樊嘉杰; 樊学军; 张国旗 ; 一种电热式针灸针用消毒装置, 实用新型,中国,专利申请号:CN201821778571.8,已授权。
[4] 唐红雨;叶怀宇;罗亮亮;钱诚;王明明;樊学军;张国旗.一种免封装器件的紫外固化压膜装置,实用新型,中国,专利申请号:CN201620762970.X,已授权。
[5] 唐红雨;钱诚;叶怀宇;樊学军;张国旗. 一种材料光热转换效率测试平台, 实用新型,中国,专利申请号:CN201620957676.4,已授权。
[6] 唐红雨;梁润园;张国旗.用于柔性显示器件的温度测量系统. 实用新型,中国,专利申请号:CN201521129270.9,已授权。
待授权专利
[1] 唐红雨;张清纯;张国旗.一种基于氮化硼的碳化硅栅极介电层及其制备方法与应用, 发明专利申请号202311333461.6, 20231016
授课情况:
硕士课程《微纳电子材料与器件仿真技术》(春季)
硕博课程《微纳电子器件》(秋季)
本科院校及专业:同济大学车辆工程;
复旦入学时间及专业:2024年9月,电子信息;
所获奖励:上海市陈嘉庚青少年发明奖一等奖