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个人信息Personal Information
教授 博士生导师
主要任职:教授
性别:男
毕业院校:瑞典Linkoping University
学历:博士研究生毕业
学位:哲学博士学位
在职信息:在职人员
所在单位:电子科学与工程学院
入职时间:2024-06-07
学科:材料物理与化学
电子信息材料与元器件
办公地点:电子科技大学清水河校区五号科研楼313
有机纳米光学与超表面
相关研究论文:
1. S. Chen, E. S. H. Kang, M. Shiran Chaharsoughi, V. Stanishev, P. Kuhne, H. Sun, C. Wang, M. Fahlman, S. Fabiano, V. Darakchieva, and M. P. Jonsson*. "Conductive polymer nanoantennas for dyanmic organic plasmonics", Nature Nanotechnology, 2020, 15, 34.
2. S. Chen and M. P. Jonsson*. "Dynamic conducting polymer plasmonics and metasurfaces", ACS Photonics, 2023, 10, 571.
3. Y. Duan, S. Chen, and M. P. Jonsson. "Broadband chiroptics with twist-stacked hyperbolic conducting polymer thin films", Advanced Materials, 2025, 37, 22417024.
4. A. Karki, G. Cincotti, S. Chen, C. Wang, V. Stanishev, V. Darakchieva, M. Fahlman, and M. P. Jonsson*. "Electrical tuning of plasmonic conducting polymer nanoantennas", Advanced Materials, 2022, 34, 2107172.
5. Y. Duan, A. Rahmanudin, S. Chen, N. Kim, K. Tybrandt, and M. P. Jonsson*. "Tuneable anisotropic plasmonics with shape-symmetric conducting polymer nanoantennas", Advanced Materials, 2023, 35, 2303949.
6. S. Kazi, P. Bandaru, H. Tang, Y. Duan, S. Chen, F. Huang, and M. P. Jonsson*. "N-type redox-tunable conducting polymer optical nanoantennas", Journal of Mateirals Chemistry C, 2024, 12, 17469.
电致变色与功能器件
相关研究论文:
1. Y. Wang, L. Pang, H. Ma, M. Liu, Y. Jia, Y. Wei, S. Chen*, H. Sun*, Y. Zhao*, and K. Xu*. "Balanced ionic-electronic conductors enabling organic electrochemical memristors", SmartMat, 2025, 6, e70024.
2. S. Chen, S. Rossi, R. Shanker, S. Gamage, G. Cincotti, P. Kuhne, V. Stanishev, I. Enqguist, M. Berggren, J. Edberg, V. Darakchieva, and M. P. Jonsson*. "Redox-tunable structural color images based on UV-patterned conducting polymers", Advanced Materials, 2021, 33, 2102451.
3. S. Rossi, O. Olsson, S. Chen, D. Banerjee, A. Dahlin, and M. P. Jonsson*. "Dynamically tuneable reflective structural coloration with electroactive conducting polymer nanocavities", Advanced Materials, 2021, 33, 2105004.
4. S. Chen, I. Petsagkourakis, N. Sapampinato, C. Kuang, X. Liu, R. Brooke, E. S. H. Kang, M. Fahlman, X. Crispin, E. Pavlopoulou*, and M. P. Jonsson*. "Unravelling vertical inhomogeneity effects in VPP PEDOT:Tos films", Journal of Materials Chemistry A, 2020, 8, 18726.
5. C. Zhang, R. Xiao, M. Wu, T. Wu, X. Liu, F. Gan, J. Zhao, J. Mo, S. Chen, C. Che*, G. Chen*, R. Crispin, C. Kuang*, and S. Han*. "High-performance jointless all-organic Ohmic junction thermoelectric generators", Nano Energy, 2025, 142, 111188.
6. C. Zhang, X. Liu, S. Han*, M. Wu, R. Xiao, S. Chen*, and G. Chen*. "High-performance n-type organic thermoelectric aerogels toward flexible energy harvesting and sensing devices", Advanced Electronic Materials, 2025, 11, 200824.
电磁辐射调控器件
相关研究论文:
1. X. Sun, W. Li, C. Kuang*, T. Wen, Q. Wen*, and S. Chen*. "Dielectric microbead-decorated conductive polymer composites towards ultrathin high-performance Terahertz absorbing coatings", Journal of Materials Chemistry C, 2025, minor revision.
2. C. Kuang, S. Chen*, M. Luo, Q. Zhang, X. Sun, S. Han, Q. Wang, V. Stanishev, V. Darakchieva, R. Crispin, M. Fahlman, D. Zhao, Q. Wen*, and M. P. Jonsson*. "Switchable terahertz absorbers based on sustainable conducting polymer aerogels", Advanced Science, 2024, 11, 2305898.
3. C. Kuang, S. Chen*, M. Liao, A. Rahmanudin, D. Banerjee, J. Edberg, K. Tybrandt, D. Zhao, and M. P. Jonsson*. "Electrically tunable infrared optics enabled by flexible ion-permeable conducting polymer-cellulose paper", npj Flexible Electronics, 2024, 8, 55.
4. X. Sun, S. Chen, C. Kuang, W. Fu, Z. Duan, and Q. Wen*. "Pyramidal rGO aerogel with ultra-broadband electromagnetic absorption from microwave to terahertz bands", ACS Applied Nano Materials, 2023, 6, 3893.
椭圆偏振光谱测量术
相关研究论文:
1. S. Chen, P. Kuhne, V. Stanishev, S. Knight, R. Brooke, I. Petsagkourakis, X. Crispin, M. Schubert, V. Darakchieva*, and M. P. Jonsson*. "On the anomalous optical conductivity dispersion of electrically conducting polymers: ultrawide spectral range ellipsometry combined with a Drude-Lorentz model", Journal of Materials Chemistry C, 2019, 7, 4350.