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领域:高端装备制造产业 学校:电子科技大学职称:副教授

研究内容1 铁电、介质氧化物功能材料与半导体异质结界/表面物性及其光、电薄膜器件 研究内容2 基于表/界面新奇效应的光电转化材料与器件研究 研究内容3 大形变下界面力、电学特性及其微纳器件...

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教育背景

2005.–2008.12, 电子科技大学, 电子信息材料与元器件, 博士 2002.9–2005.7, 电子科技大学, 微电子学与固体电子学, 硕士 1998.9–2002.7, 电子科技大学, 材料物理与化学, 学士, 导师

工作经历

2013.7-至今, 电子科技大学, 电子科学与工程学院, 副教授 2013.9-2014.9, 香港理工大学, 应用物理系, research fellow 2009.1-2011.7, 电子科技大学, 微电子与固体电子学院 2010.7-2011.7, 香港理工大学, 博士后

项目课题经历

论文、成果、著作等

1. Liu. Y, Huang.W, Wang. XW, Liang. RR, Wang. J, Yu. B, Ren. TL, Xu. J, Plasmon Resonance Enhanced WS2 Photodetector with Ultra-High Sensitivity and Stability Applied Surface Science, 2019, in press 2. Zhou. HP, Ye. X, Huang. W, Wu. MQ, Mao LN, Yu. B, Xu. S, Levchenko. I, Bazaka. K, Wearable, Flexible, Disposable Plasma-Reduced Graphene Oxide Stress Sensors for Monitoring Activities in Austere Environments, ACS Appl. Mater. Interfaces, 2019, 37: 134-142 3. Guo. JX, Li. SD, Huang. W*, Gong. TX, Wei. XB, Chen. H, Yu.B, Near-infrared photodetector based on few-layer MoS2 with sensitivity enhanced by localized surface plasmon resonance, Applied Surface Science, 2019, 6: 543-549 4. Liu. Y, Huang.W*, Wang. XW, Liang. RR, Wang. J, Yu. B, Ren. TL, Xu. J, A Hybrid Phototransistor Neuromorphic Synapse, Journal of the Electron Devices Society, 2019, DOI 10.1109/JEDS.2018.2874334 5. Hou. F, Liu. JZ, Liu. ZW, Huang W. New Diode-Triggered Silicon-Controlled Rectifier for Robust Electrostatic Discharge Protection at High Temperatures, IEEE Transactions on Electron Devices, 2019, 66: 2044-2048 6. Liu. Y, Gong. TX, Wang. XW, Zhang. H, Xu. J, Huang. W*, Ren. TL, Liu. ZW, Yu.B, Ultra-Sensitive and Plasmon-Tunable Graphene Photodetector for Micro-Spectrometers, Nanoscale,2018, DOI: 10.1039/C8NR04996C 7. Guo. JX, Cui. XM, Li. SD, Mao. LN, Liu. Y, Huang. W*, Gong. TX, Wei. XB, Chen. H, Yu.B, One-step Synthesis of Mesoporous TiO2 Film for High Photon-to-Electron Transport Efficiency in Dye-sensitized Solar Cells, Journal of Alloys and Compounds, 2019,770:662 8. Gong.TX, Zhang. H, Guo. JX, Mao. LN, Huang. W*, Yu.B, Highly Responsive Flexible Strain Sensor Using Polystyrene Nanoparticle Doped Reduced Graphene Oxide for Human Health Monitoring, CARBON, 2018,140:286 9. Lu. K, Huang. W *, Guo. JX, Gong. TX, Wei. XB, Bing-Wei Lu, Si-Yi Liu and Bin Yu. Ultra-Sensitive Strain Sensor Based on Flexible Poly(vinylidene fluoride) Piezoelectric Film, Nanoscale Research Letters, 2018, 13:83 10. Liu. Y, Huang. W*, Gong. TX, Su. Y, Zhang. H, He. YW, Liu. ZW, Yu.B, Ultra-sensitive near-infrared graphene photodetectors with nanopillar antennas. Nanoscale, 2017, 9, 44:17459 11. Li. X, Huang. W*, Yao. G, Gao. M, Wei. XB, Liu. ZW, Zhang. H, Gong. TX, Yu.B, Highly sensitive flexible tactile sensors based on microstructured multiwall carbon nanotube arrays, Scripta Materialia, 2017, 129 :61 12. Su. Y, Guo, ZX, Huang. W*, Gong. TX, Liu. ZW, He. YW, Yu. B, Ultra-sensitive graphene photodetector with plasmonic structure, Applied Physics Letters, 2016,109, 17: 173107 13. Wang, J; Malik, I.A; Liang, RR; Huang, W; Zheng, R.K; Zhang, J.X, Nanoscale control of low-dimensional spin structures in manganites, Chinese Physics B, 2016, 25, 067504 (Invited review) 14. F. G. Zheng, Y. Xin, W. Huang, J. X. Zhang, X. F. Wang, M. R. Shen, W. Dong, P. Zhang, L. Fang, Y.B. Bai, X.Q. Shen, and J.H. Hao, Above 1% efficiency of a ferroelectric solar cell based on the Pb(Zr,Ti)O3 film, J. Mater. Chem. A, 2014,2, 1363-1368 15. W. Huang*, J.J. Yang, G.Y. Gao, Y. Lei, H. Z. Zeng, J. Zhu, F. G .Zheng and J. H. Hao, Electrical transport and resistance switching characteristics of BiFeO3/Nb:SrTiO3/GaAs heterostructure fabricated by pulsed laser deposition, Applied Physics Letters, 2014,105, 062904 16. F. G. Zheng, P. zhang, X. F. Wang, W. Huang, J.X. Zhang, M.R. Shen, W. Dong, L. Fang, Y.B. Bai, X.Q. Shen, H. Sun and J.H. Hao, Photovoltaic Enhancement Due to Surface-Plasmon Assisted Visible-Light Absorption at the Inartificial Surface of Lead Zirconate-Titanate Film, Nanoscale, 2014,6, 2915-2921 17. Z.B.Yang, W. Huang, J.H. Hao, Determination of band alignment of pulsed-laser-deposited perovskite titanate/III-V semiconductor heterostructure using X-ray and ultraviolet photoelectron spectroscopy, Applied Physics Letters, 2013, Vol 103: 031919. 18. G. Y. Gao, Z. B. Yang, W. Huang, H. Z. Zeng, Y. Wang, H. L. W. Chan, W. B. Wu, J. H. Hao, Heteroepitaxial growth and multiferroic properties of Mn-doped BiFeO3 films on SrTiO3buffered III-V semiconductor GaAs, Journal of Applied Physics, 2013, Vol. 114: 094106. 19. W. Huang, J. H. Hao, and J. Y. Dai,Structural and resistance switching properties of ZnO/SrTiO3/GaAs heterostructure grown by laser molecular beam epitaxy, Applied Physics Letters, 2010, Vol 97: 162905. 20. W. Huang, Z. P. Wu, and J. H. Hao, Electrical properties of ferroelectric BaTiO3 thin film on SrTiO3 buffered GaAs by laser molecular beam epitaxy, Applied Physics Letters, 2009, Vol.94: 032905. 21. W. Huang, J. Zhu, H. Z. Zeng, X. H. Wei, Y. Zhang, Y. R. Li, and J. H. Hao,Effect of strain on the ferroelectric properties in epitaxial perovskite titanate thin films grown on ferromagnetic CoFe2O4 layers, Scripta Materialia, 2008, Vol.58 (12): 1118. 22. W. Huang, L. X. Zhou, H. Z. Zeng, X. H. Wei, J. Zhu, Y. Zhang, and Y. R. Li Epitaxial growth of the CoFe2O4 film on SrTiO3 and its characterization, Journal of Crystal Growth, 2007, Vol. 300: 426. 23. W. Huang, J. Zhu, H. Z. Zeng, X. H. Wei, Y. Zhang, and Y. R. Li, Strain-induced magnetic anisotropy in highly epitaxial CoFe2O4 thin film. Applied Physics Letters, 2006, Vol. 89: 262506. 24. W. Huang, S.W. Jiang, Y.R. Li, J. Zhu, Y. Zhang, X.H. Wei, and H.Z. Zeng,Crystallization behavior and domain structure in textured Pb(Zr0.52Ti0.48)O3 thin films by different annealing process, Thin Solid Films, 2006, Vol. 500:138.

专利、著作版权等

Jianhua Hao,Wen Huang,Zhibing Yang;“Semiconductor Gallium Arsenide Compatible Epitaxial Ferroelectric Devices for Microwave Tunable Application”, 2015, patent No us 8980,648b1
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