副教授

张武

发布时间:2026-03-30

   张武 副教授/博士

  

  研究领域光学与电磁学

  研究方向 电磁/光学超表面、光流控技术、柔性电子技术

  电子邮箱 zhangwu@gzhu.edu.cn, zh0002wu@outlook.com

  所在系所 光电工程系 物理与材料科学学院

 

 

 

个人简介

教育经历

博士        新加坡南洋理工大学电子电气工程学院(光学工程专业)       2009~2015

本科        新加坡南洋理工大学电子电气工程学院(微电子专业)       2005~2009


科研背景

2009年本科毕业于新加坡南洋理工大学电子电气工程学院微电子工艺专业(一等荣誉学位),2015年获南洋理工大学电子电气工程学院博士学位。2015~2018年于哈佛大学工程与应用科学学院从事博士后工作。主要研究方向为电磁/光学超表面、光流控技术及柔性电子技术,并在Advanced Optical Materials, Applied Physics Letters, Optics Express等学术刊物发表论文50多篇。已主持国家自然科学基金青年项目,广东省自然科学基金面上项目,广东省重点实验室开放项目,广州市校联合基础研究项目等多个可以课题,并参与了多项新加坡国家自然科学基金项目。 

工作经历

 

广州大学                          物理与材料科学学院      副教授/光电系主任   2021-今

广州大学                          物理与电子工程学院        副教授                    2019-2020

哈佛大学                         工程与应用科学学院      博士后                    2015-2018

新加坡科技研究局            微电子研究所                实习生                    2012~2015



主要论文

期刊论文(通讯作者*, 共同一作#)

1. Fanming Liu, Hailin Yang, Wu Zhang, Meng Zhang, Chengyun Zhang*, “Flexible pressure sensor with femtosecond laser-induced hierarchical micro/nanostructures for physiological signal monitoring and tactile object recognition”, Measurement 263 (2026) 120235

2. Wu Zhang, Yanxiao Lin, Bifeng Zhu, Dake Li, Bingzhi Zhang, Lipket Chin, Meng Zhang, “Lateral optical force on a homogenous dielectric microsphere via two-dimensional focused beam”, Optics & Laser Technology 189 (2025) 112998.

3. Meng Zhang, Chengjie Qiu, Jianxiang Wang, Xuan Huang, Wu Zhang, Lip-Ket Chin 4,* and Wenli Shang*, “A Soft Capacitive Pressure Sensor Based on a Liquid Dielectric Layer”, Sensors 2025, 25, 2700

4. Jin Qin, Yuzhi Shi, Shibin Jiang, Yusong Gao, Shupei Yao, Zhanshan Wang, Xinbin Cheng, Din Ping Tsai,* Wu Zhang,* and Weiming Zhu*, “Ultrabroadband and >93% Microwave Absorption Enabled by Doped Water Meta-Atom Lattice with Subwavelength Thickness”, Advanced Materials, 36, 2411153 (2024)

5. Jin Qin, Yusong Gao, Wu Zhang,* Sha Xiong,* and Weiming Zhu*, “Microfluidic Metasurface with Constant Absorption Efficiency Throughout the Ku Band”, Adv. Mater. Technol. 2302145, 2024

6. Meng Zhang, Shupei Yao, Bifeng Zhu, Jiahan Lin, Jifang Tao, Wenli Shang,* and Wu Zhang*, “Movable Typography Inspired Tunable Meta-Cylinder for Multi-Directional Microwave Beam Shaping”, Adv. Mater. Technol. 2302108, 2024

7. Wu Zhang, Jiahan Lin, Zhengxin Yuan, Yanxiao Lin , Wenli Shang, Lip Ket Chin and Meng Zhang*, “Terahertz Metamaterials for Biosensing Applications: A Review”, Biosensors 14, 3, 2024,

8. Wu Zhang, Jiahan Lin, Zitao Zheng, Yusong Gao, Jifang Tao, Wenli Shang and Meng Zhang*, “A One-Bit Programmable Multi-Functional Metasurface for Microwave Beam Shaping”, Micromachines, 2023, 14, 2011

9. Yubin, Deng, Kekai Huang, Jun Lin, Zhaoxu Sun, Weiyong Ye, ,Shihong Huang, Wu Zhang, Bingzhi Zhang*, “Asymmetric dynamics of the orbital angular momentum of vector beam propagation in nonlocal nonlinear media with PT -symmetric azimuthal potentials”, Journal of Optics 2023, 25, 025603

10. Wu Zhang, Jiahan Lin, Xiaohui Fang, Yanxiao Lin, Kai Wang and Meng Zhang*, “An Active Electromagnetically Induced Transparency (EIT) Metamaterial Based on Conductive Coupling”, Materials 2022, 15, 7371

11. Yubin, Deng, Jun Lin, Zhaoxu Sun, Weiyong Ye, ,Shihong Huang, Wu Zhang, Bingzhi Zhang*, “Higher-order dynamic localization in sinusoidal modulated optical lattices with PT-symmetry”, Physics Letters A, 2022, 450, 128365

12. Meng Zhang, Zihuang Wang, Yanhua Zheng, Bifeng Zhu, Bingzhi Zhang, Xiaohui Fang, Wenli Shang and Wu Zhang*, “Manipulation of Elastic Instability of Viscoelastic Fluid in a Rhombus Cross Microchannel”, Polymers 2022, 14, 2152

13. Meng Zhang, Desen Li, Jiahan Lin, Bingzhi Zhang, Jifang Tao, Zhenxue Zhao, Yuan Zeng, Wenli Shang* and Wu Zhang*, “A reflective metasurface for broadband OAM vortex wave generation”, Frontiers in Physics, 2022.1042024

14. W. Zhang*, Z. H. Wang, M. Zhang, J. H. Lin, W. Q. Chen, Y. H. Hu and S. Z. Li, “Flow Direction-Dependent Elastic Instability in a Symmetry-Breaking Microchannel”, Micromachines, 12, 1139 :2021

15. M.  Zhang, S. J.  Han, Z. Y. Xuan, Xiaohui Fang , Xiaoming Liu* , Wu Zhang*, and Hui-Jiuan Chen*,  “Study of Microwave-Induced Ag Nanowire Welding for Soft Electrode Conductivity Enhancement”,  Micromachines, 12(6), 618,  2021

16. W. Zhang*, B. Z. Zhang , K. J. Cheng, X. H. Fang, W. Q. Chen, Z. H. Wang, D. Hong and M. Zhang*, “Microfluid-based soft metasurface for tunable optical activity in THz Wave”, Optics Express, 29(6): 8786, 2021

17. X. H. Fang#*, W. Zhang#, J. W. Li , C. L. Lin, Z. N. Chen, M. Zhang, S. H. Huang, D. K. Lu, M. G. Wan, X. Z. Qiu*,“Signal processing assisted Vernier effect in a single interferometer for sensitivity magnification”, Optics Express, 29(8): 11570, 2021

18. W. Zhang*, Y. X. Lin, Y. S. Gao, Z. K. Guo, X. L. Li, Y. H. Hu, P. C. Dong, Q. F. Zhang, X. H. Fang and M. Zhang*, “Numerical and Experimental Investigation on the Optical Manipulation from an Axicon Lensed Fiber”, Micromachines,  12, 187 (2021)

19. M. Zhang*#, W. Zhang*#, Z. H. Wang, W. Q. Chen, “Experimental Study on the Viscoelastic Flow Mixing in Microfluidics”, Bio-Integration, 1, 147 (2020)

20. C. Lan*, S. J. Li, H. Chen, W. Zhang*, H. Li, “Research on running state recognition method of hydro-turbine based on FOA-PN”, Measurement,  169, 108498 (2020)

21. Q. H. Song, P. C. Wu, W. M. Zhu, W. Zhang, Z. X. Shen, P. H. J. Chong, Q. X. Liang, D. P. Tsai, T. Bourouina,  Y. Leprince-Wang, and A. Q. Liu, “Split Archimedean spiral metasurface for controllable GHz asymmetric transmission”,  Applied Physics Letters, 114, 151105 (2019)

22. M. Zhang#, W. Zhang#, Z. W. Wu, Y. N. Shen , Yicheng Chen, Chaofeng Lan, Fengchen Li and Weihua Cai, “Comparison of Micro-Mixing in Time Pulsed Newtonian Fluid and Viscoelastic Fluid”,  Micromachines ,10, 262 (2019)

23. M. Zhang#*, W. Zhang#, Z. W. Wu, Y. N. Shen, H. Y. Wu, J. P. Cheng, H. N. Zhang, F. C. Li, W. H. Cai*, “Modulation of viscoelastic fluid response to external body force”,  Scientific Reports 9, 9402 (2019)

24. C. F. Lan, M. Zhang, X. M. Sui, L. R. Fu and W. Zhang, “Study on noise control effect based on generalized Lorenz system”,  Applied Acoustics, 145, 184-192 (2018)

25. M. Zhang, Y. F. Cui, W. H. Cai , Z. W. Wu, Y. Y. Li, F. C. Li and W. Zhang*, “High Mixing Efficiency by Modulating Inlet Frequency of Viscoelastic Fluid in Simplified Pore Structure”, Processes, 6, 210 (2018)

26. L. Guan, Z. He, D. Z. Ding, Y. F. Yu, W. Zhang and R. S Chen*, “Polarization-controlled shared-aperture metasurface for generating a vortex beam with different modes”, IEEE Transactions on Antennas and Propagation, 66, 7455-7459 (2018)

27. W. Zhang, Q. H. Song, W. M. Zhu, Z. X. Shen, P. Chong, D. P. Tsai, C. W. Qiu and A. Q. Liu*, “Metafluidic metamaterial: a review”, Advances in Physics: X, 3, 1417055 (2018)

28. W. Zhang*, M. Zhang, Z. K. Yan, X. Zhao, J. P. Cheng and Ai Qun Liu, “Single mode to dual mode switch through a THz reconfigurable metamaterial”, Applied Physics Letters, 111, 241106 (2017)

29. Q. H. Song#, W. Zhang#, P. C. Wu, W. M. Zhu, Z. X. Shen, P. H. J. Chong, Q. X. Liang, Z. C. Yang, Y. L. Hao, H. Cai, H. F. Zhou, Y. D. Gu, G. Q. Lo, D. P. Tsai, T. Bourouina, Y. Leprince-Wang, and A. Q. Liu, "Water-Resonator-Based Metasurface: An Ultrabroadband and Near-Unity Absorption," Advanced Optical Materials, 5, 1601103 (2017)

30. M. Zhang#, W. Zhang#, A. Q. Liu , F. C. Li*, C. F. Lan, “Tunable Polarization Conversion and Rotation based on a Reconfigurable Metasurface”, Scientific Reports, 7, 12068 (2017)

31. Q. H. Song, W. M. Zhu, P. C. Wu, W. Zhang, Q. Y. S. Wu, J. H. Teng, Z. X. Shen, P. H. J. Chong, Q. X. Liang, Z. C. Yang, D. P. Tsai, T. Bourouina, Y. Leprince-Wang and A. Q. Liu*, "Liquid-metal-based metasurface for terahertz absorption material, frequency-agile and wide angle," APL Materials, 5, 066103 (2017)

32. W. M. Zhu, Q. H. Song, L. B. Yan, W. Zhang, P. C. Wu, L. K. Chin, H. Cai, D. P. Tsai, Z. X. Shen, T. W. Deng, S. K. Ting, Y. Gu, G. Q. Lo, D. L. Kwong, Z. C. Yang, R. Huang, A. Q. Liu*, N. Zheludev*,  "A Flat Lens with Tunable Phase Gradient by Using Random Access Reconfigurable Metamaterial," Advanced Materials,  27, 4739 (2015)

33. W. Zhang, W. M. Zhu, E. E. M. Chia, Z. X. Shen, H. Cai, Y. D. Gu, W. Ser and A. Q. Liu, "A pseudo-planar metasurface for a polarization rotator," Optics Express,  22, 10446 (2014)

34. W. Zhang, W. M. Zhu, H. Cai, M. L. J. Tsai, G. Q. Lo, D. P. Tsai, H. Tanoto, J. H. Teng, X. H. Zhang, D. L. Kwong and A. Q. Liu*, "Resonance switchable metamaterials using MEMS fabrications," IEEE Journal of Selected Topics in Quantum Electronics,  19, 4700306 (2013)

35. W. Zhang, W. M. Zhu , E. P. Li , H. Tanoto , Q. Y. Wu , J. H. Teng , X. H. Zhang , J. M. Tsai , G. Q. Lo , D. L. Kwong and A. Q. Liu*, "Micromachined Switchable Metamaterial with Dual Resonance," Applied Physics Letters,  101, 151902 (2012)

36. W. M. Zhu, A. Q. Liu*, W. Zhang, J. F. Tao, T. Bourouina, J. H. Teng, X. H. Zhang, Q. Y. Wu, H. Tanoto, H. C. Guo, G. Q. Lo and D. L. Kwong*, "Polarization dependent state to polarization independent state change in THz metamaterials," Applied Physics Letters,  99, 221102 (2011)

37. Leyi Zheng,Junxi Wu,Yanxiao Lin,Taojie Li,Yuchun Luo,Qiqi Du,Meng Zhang,Wu Zhang, “ A Dual Micro-structure based Soft Pressure Sensor”, The 5th International Conference on  Electronics Technology and Artificial Intelligence (ETAI 2026), Harbin

38. Dake Li,Yahui Chen,Hongbo Wei,Haohui Qin,Zhaohua Wen,Zitao Zheng,Wu Zhang, “A Flexible Stretching Sensor based on Tunable Resistance of CNT-PDMS Composite”, 2025 5th International Conference on Sensors  and Information Technology (ICSI 2025), Nanjing

39. W. Zhang, M. Zhang, J. H. Lin, Y. X. Lin, W. Q. Chen, Z. H. Wang, “Micromachined double-layer chiral metasurface”, Micro-optics and MOEMS(AOPC 2021), Beijing

40. W. Zhang, “Lateral Optical Force on Mie Particle via Two-dimensional Focused Beam”, The 9th International Multidisciplinary Conference on Optofluidics (IMCO 2019), Hong Kong

41. M. Zhang, W. Zhang, Z. W. Wu and W. H. Cai, “Instabilities of Pre-Stretched Viscoelastic Flow in Microfluidic Cross-Slot Devices”, 6th International Conference of Micro/Nanoscale Heat and Mass Transfer (MNHMT 2019), Dalian

42. Q. H. Song, W. M. Zhu, W. Zhang, M. Ren, E. M. Chia and A. Q. Liu, “Tunable THz filter based on random access metamaterial with liquid metal droplets”, 27th IEEE International Conference on Micro Electro Mechanical Systems (MEMS 2014), San Francisco.

43. W. M. Zhu, B. Dong, Q. H. Song, W. Zhang, R. F. Huang, S. K. Ting and A. Q. Liu, “Tunable meta-fluidic-materials base on multilayered microfluidic system”, 27th IEEE International Conference on Micro Electro Mechanical Systems (MEMS 2014), San Francisco.

44. W. Zhang, W. M. Zhu, H. Cai, P. Kropelnicki, A. B. Randles, M. Tang, H. Tanoto, Q. Y. Wu, J. H. Teng, X. H. Zhang, D. L. Kwong and A. Q. Liu, “A Tunable MEMS THz Waveplate Based on Isotropicity Dependent Metamaterial”, The 17th International Conference on Solid-State Sensors, Actuators and Microsystems (Transducers 2013), Barcelona.

45. W. Zhang, W. M. Zhu, J. M. Tsai, G. Q. Lo, D. L. Kwong, E. P. Li and A. Q. Liu, "THz Polarizer using Tunable Metamaterials", 26th IEEE International Conference on Micro Electro Mechanical Systems (MEMS 2013), Taipei.

46. W. M. Zhu, W. Zhang, R. F. Huang, S. K. Ting, G. Q. Lo, D. L. Kwong, and A. Q. Liu, "Metamaterial tunable filter with liquid metal", 26th IEEE International Conference on Micro Electro Mechanical Systems (MEMS 2013), Taipei.

47. W. Zhang, W. M. Zhu, Y. H. Fu, J. F. Tao, D. P. Tsai, G. Q. Lo,D. L. Kwong, A. Q. Liu, “A THz Dual Mode Switch Using MEMS Switchable Metamaterial”, 2011 IEEE 24th International Conference On Micro Electro Mechanical Systems (MEMS 2011), Cancun.

48. W. Zhang, J. F. TAO, W. M. Zhu, H. Cai and A. Q. Liu, “Tunable Optical Filter by Thermal Effect Based on MEMS Technology”, 5th International Conference on Materials for Advanced Technologies (ICMAT 2009), Singapore.

49. W. Zhang, J. F. TAO, W. M. Zhu, H. Cai and A. Q. Liu, “High Accuracy Pressure Sensor Based on Optical MEMS Technology”, 5th International Conference on Materials for Advanced Technologies (ICMAT 2009), Singapore.

50. W. M. Zhu, W. Zhang, H. Cai, J. Tamil, B. Liu, T. Bourouina and A. Q. Liu, “A MEMS Digital Mirror For Wavelength Selection Of Tunable Laser”, 15th International Conference on Solid-State Sensors, Actuators and Microsystems (Transducers 2009), Denver.

51. H. Cai, B. Liu,  J. Tamil, W. M. Zhu, J. F. Tao, W. Zhang, Q. X. Zhang and A. Q. Liu, “Characteristics Of Micromachined Lasers For Injection Locking,” 15th International Conference on Solid-State Sensors, Actuators and Microsystems (Transducers 2009), Denver.

52. W. M. Zhu, X. M. Zhang, H. Cai, J. Tmail, W. Zhang, B. Liu, T. Bourouina and A. Q. Liu, “MEMS Laser with tunable wavelength and polarization using optical tunneling effect”, 22nd IEEE International Conference on Micro Electro Mechanical Systems (MEMS 2009), Sorrento.

53. H. Cai, B. Liu, X. M. Zhang, W. M. Zhu, J. Tamil, W. Zhang, Q. X. Zhang and A. Q. Liu, “A micro machined thermo-optic tunable laser”, 22nd IEEE International Conference on Micro Electro Mechanical Systems (MEMS 2009), Sorrento.


主持及参与项目

1. “基于平面超构透镜的微型光镊捕获系统的研究”,国家自然科学基金青年项目(24万元), 2020-2022,主持

2. “基于色散超表面的光镊微分析系统构建及应用研究”, 广东省自然科学基金面上项目(10万元),2022-2024,主持

3. “基于柔性电子压力传感系统的智能编码超表面对毫米波的调控研究”, 广东省自然科学基金面上项目(10万元),2023-2025,主持

4. “基于微流控系统的可重构电磁超表面及其应用”,市校联合资助基础研究项目(20万元),2021-2023,主持

5. “基于拉锥光纤的微型光镊捕获系统研究”,广东省信息光子技术重点实验室开放项目(5万元),2021-2022, 主持

6. “基于可调节人工超表面的涡旋电磁波透镜研究”, 广州大学校内科研项目(100万元),2019-2023,主持

7. “Optofluidic Nano-Cytometer For Virus Purification, Sorting And Quantification As An Assistive Toolkit For Virus Diagnosis”, 新加坡国家研究基金项目 (685万新加坡元,合人民币约3400万元),2015-2020,参与

8. “Optofluidic Fishnet Constructed By Optofluidic Force For Nanoparticle And Single Molecule Manipulation, Patterning And Sorting”, 新加坡教育部基金项目(30万新加坡元,合人民币约150万元),2014-2017,参与

9. “Optofluidic System For Bacterial Detection And Identification”, 新加坡国家研究基金项目 (180万新加坡元,合人民币约900万元),2012-2018,参与


授权专利

1. 张梦;文照华;王健翔;丘成杰;郑晓乐;缪小明;张武,”基于机器学习的非接触式电梯控制系统”, 专利号:ZL 2025 1 0351059.3,授权日2025.010.28

2. 张梦,林彦晓,郑乐怡,朱必锋,文照华,罗渝淳,杜琪琪,袁梓旋,张武,“光控色素微流透镜及其动态形状调整系统及方法”,国家发明专利,专利号:ZL 2024 1 1413972.3,授权日2025.09.23

3. 张武,朱必锋,张梦,郑艳华,林佳翰,陈洪彬,王子煌,”一种在多方位角对微波反射波前调控的超表面装置”, 国家发明专利,专利号ZL 2021 1 1507586.7,授权日2024.9.24

4. 张武,高钰淞,林彦晓,王子煌,朱必锋,胡裕鸿,董鹏才,”基于不同浓度的丙三醇溶液的超表面可调微波吸收器”, 国家发明专利,专利号ZL 2021 1 1507598.X,授权日2024.10.18

5. 张梦;刘子淇;张武;陈艺尹;王子煌;陈为骞,”一种柔弹性导电微纳柱体的制备方法及其应用”, 国家发明专利,专利号ZL 2021 1 0315420.9,授权日2024.3.26

6. 张武,张梦,陈为骞,兰朝凤,郑艳华,朱必锋,陈洪彬,”基于微流控与微光镊阵列的CTC富集释放系统及制备方法”, 国家发明专利,专 利 号:ZL 2021 1 1507602.2,授权日2023.11.7

7. 张武,王子煌,张梦,朱必锋,陈洪彬,高钰淞,林佳翰,”基于光纤光镊的高灵敏加速度测量方法及传感器”, 国家发明专利,专利号ZL 2021 1 1525384.5,授权日2023.10.20

8. 张武,林佳翰,郭泽楷,尹舒琪,林彦晓,董鹏才,胡裕鸿,”一种多孔微针经皮递药及体液检测系统”, 国家发明专利,专利号ZL 2021 1 1009613.8, 授权日2023.6.20

9. 张武,张梦,王子煌,陈为骞,方晓惠,赵振博,胡裕鸿,林彦晓,”可调谐太赫兹波极化旋转的柔性超材料及其使用方法”,国家发明专利,专利号ZL 2020 1 0704371.3, 授权日2021.8.24



 

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