硕士生导师

师资队伍

教职工信息

姓名:李泽

地址:ok138cn太阳集团529 呼和浩特市大学西路 235 号

邮箱:li@imu.edu.cn

邮编:010021

工作经历

2022.08-2025.12 OK138太阳集团, ok138cn太阳集团529, 讲师

2026.01-至今  OK138太阳集团 ok138cn太阳集团529 副教授

研究方向

纳米光学 光与物质相互作用 完美磁光散射体 表面增强光谱学

主持的国家自然科学基金项目/课题

国家自然科学基金委员会, 青年科学基金项目, 1230439,2024-01-01 至 2026-12-31, 30万元,在研,主持

主要发表论文

【1】Z. Li, Y. Li, Q. You, M. Wang, C. Zhu, Y. Yang, H. Luan, P. Wang, Magnetic Purcell enhancement by plasmon-induced magnetic resonance of the nanoparticle-on-mirror configuration. Physical Review A 2024, 110 (1).

【2】Z. Li, Y. Pan, Q. You, L. Zhang, D. Zhang, Y. Fang, P. Wang, Graphene-coupled nanowire hybrid plasmonic gap mode– driven catalytic reaction revealed by surface- enhanced Raman scattering. Nanophotonics 2020, 9 (15), 4519.

【3】Z. Li, Q. You, J. Li, C. Zhu, L. Zhang, L. Yang, Y. Fang, P. Wang, Boosting Light– Matter Interaction in a Longitudinal Bonding Dipole Plasmon Hybrid Anapole System. The Journal of Physical Chemistry C 2023, 127 (7), 3594.

【4】Z. Li, Q. You, H. Wang, L. Zhang, D. Zhang, S. Jia, Y. Fang, P. Wang, Nanowire dimer optical antenna brightens the surface defects of silicon. Nanophotonics 2023, 12 (9), 1723.

【5】Z. Li, Y. Gao, L. Zhang, Y. Fang, P. Wang, Polarization-dependent surface plasmon- driven catalytic reaction on a single nanowire monitored by SERS. Nanoscale 2018, 10 (39), 18720.

【6】Z. Liu, Y. Li, M. Wang, M. Li, L. Zhao, J. Rong, P. Wang, Z. Li*, Ideal magnetic resonance scatterers in the visible range,  Phys. Rev. A (letter) 112, L021502(2025). ( 独立通讯作者 )

【7】Y. Ren, Y. Li, Z. Xu, X.-F. Li, J. Li, S. Gu, P. Wang, M. Wang*, Z. Li*, Magnetic radiative Purcell enhancement by magnetic anapole in the gap of nanodisk on metal mirror structure, Opt. Express 2025, 33 (14) 29146.( 共同通讯作者排名 2/2 )

【8】X. Bi, Z. Li, C. Zhang, Q. You, Y. Li, Y. Wang, P. Wang, Strong Coupling of Ag@Au Hollow Nanocube/J-Aggregate Heterostructures by Absorption Spectra. The Journal of Physical Chemistry C 2022, 126 (25), 10566. (共同第一)

【9】L. Sun, Z. Li, J. He, P. Wang, Strong coupling with directional absorption features of Ag @Au hollow nanoshell/J-aggregate heterostructures. Nanophotonics 2019, 8 (10), 1835.(共同第一)

【10】Y. Wang, Q. You, Z. Li*, L. Zhang, D. Zhang, P. Wang, Strong Coupling of Plasmonic Nanorods with a MoSe2 Monolayer in the Near-Infrared Shortwave Region. The Journal of Physical Chemistry C 2024, 128 (12), 5280.( 共同通讯作者排名 1/2 )

【11】Q. You, Z. Li, Y. Li, L. Qiu, X. Bi, L. Zhang, D. Zhang, Y. Fang, P. Wang, Resonance Photoluminescence Enhancement of Monolayer MoS(2) via a Plasmonic Nanowire Dimer Optical Antenna. ACS Appl Mater Interfaces 2022.(共同第一)

【12】Q. You, C. Zhang, Y. Wang, X. Bi, Z. Li*, L. Zhang, D. Zhang, Y. Fang, P. Wang,

Biexcitons-plasmon coupling of Ag@Au hollow nanocube/MoS(2) heterostructures based on scattering spectra. Opt Express 2024, 32 (6), 9105.( 共同通讯作者排名 1/2 )

【13】Xike Qian, Yafei Li, Zhuangzhuang Xu, Tao Jiang, Meng Wang and Ze Li*. Magnetic Purcell enhancement in nanohole arrays based on anapole resonances. Optics Express 2025, 33(22), 47285( 共同通讯作者排名 2/2 )