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Chengwei Wan

Lecturer

Tel:

Email:wanchengwei@hbut.edu.cn

Biography

Teaching

Research Field

Publications

Awards & Honors

Introduction

Chengwei Wan, Lecturer at the School of Electrical and Electronic Engineering, Hubei University of Technology.He has long been dedicated to research in optical information processing, micro-nano optics, and manipulation technology of multi-dimensional light fields based on metasurfaces.In 2023, he was awarded a National Natural Science Foundation of China Youth Science Fund project, and in 2024, he received a project grant from the Hubei Provincial Department of Education.He has published over 10 SCI-indexed papers with a cumulative impact factor exceeding 100, and filed or obtained more than 10 invention patents.

Education Experience

(1) September 2019 – June 2022, Wuhan University, Physical Electronics, PhD
(2) September 2014 – June 2016, Guilin University of Technology, Control Engineering, Master's
(3) September 2010 – June 2014, College of Engineering and Technology, Hubei Polytechnic University, Electrical Engineering and Automation, Bachelor's Chinese version

Work Experience

(1) From 2022-07 to present, Hubei University of Technology, School of Electrical and Electronic Engineering, Lecturer
(2) From 2016-07 to 2019-07, China Automotive Technology Research Center Co., Ltd., Sino-Vehicle Testing Center (Wuhan) Co., Ltd., Engineer


Circuit Theory, Artificial Intelligence: Algorithms and Applications


Optical information processing;Micro-nano optics;Manipulation of multi-dimensional light fields.


[1] Zejing Wang,# Zhe Li,# Chengwei Wan#, et al. Gesture-Interactive Dynamic Holo-Display via Topography Flexible Metasurfaces. ACS Nano. 2025, 19: 1286−1294.
[2] Chengwei Wan, Zhe Li, Shuai Wan, et al. Electric‐driven meta‐optic dynamics for simultaneous near‐/far‐field multiplexing display. Advanced Functional Materials. 2022, 32 (10): 2110592.
[3] Chengwei Wan#, Chenjie Dai#, Jian Zhang#, et al. 3D Meta-prisms for versatile beam steering by hybridizing plasmonic and diffractive effect in the broadband visible regime. Small. 2021, 17(34): 2100561.
[4] Chengwei Wan, Chenjie Dai, Shuai Wan, et al. Dual-encryption freedom via a monolayer-nanotextured Janus metasurface in the broadband visible. Optics Express. 2021, 29(21): 33954-33961.
[5] Chengwei Wan, Chenjie Dai, Shuai Wan, et al. Polarization-insensitive broadband visible-light steering with tunable direction enabled by scalable plasmonics meta-gratings. Nanotechnology. 2021, 32(2): 025204.
[6] Chengwei Wan, Rui Yang, Yangyang Shi, et al. Visible-frequency meta-gratings for light steering, beam splitting and absorption tunable functionality. Optics Express. 2019, 27(26): 37318-37326.
[7] Yangyang Shi#, Chengwei Wan#, Chenjie Dai, et al. Augmented reality enabled by on-chip meta-holography multiplexing. Laser & Photonics Reviews. 2022, 16(6): 2100638.
[8] Shuai Wan#, Chengwei Wan#, Chenjie Dai, et al. Angular‐multiplexing metasurface: building up independent‐encoded amplitude/phase dictionary for angular illumination. Advanced Optical Materials. 2021, 9(22): 2101547.
[9] Zhe Li#, Chengwei Wan#, Chenjie Dai, et al. Actively switchable beam‐steering via hydrophilic/hydrophobic‐selective design of water‐immersed metasurface. Advanced Optical Materials. 2021, 9(17): 2100297.
[10] Chenjie Dai#, Chengwei Wan#, Zhe Li, et al. Stepwise dual‐Fabry‐Pérot nanocavity for grayscale imaging encryption/concealment with holographic multiplexing. Advanced Optical Materials. 2021, 9(21): 2100950.


Hubei University of Technology

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