中文
  • 邓威
    特聘副研究员
  • 博士
  • 机械工程
  • 特聘副研究员
  • 国际前沿科学研究院
 

Educational Experience

  • 2016.92019.8

     得克萨斯农工大学   With Certificate of Graduation for Doctorate Study 

  • 2014.92016.8

     纽约州立大学石溪分校   With Certificate of Graduation for Study as Master's Candidates 

  • 2010.82014.7

     中国科学技术大学   University graduated 

Work Experience

  • 2021.11Now

    南京航空航天大学      国际前沿科学研究院      特聘副研究员

  • 2019.92021.7

    德州农工大学      机械工程系      访问助理教授

Research Focus

  • [1] 水伏能源技术

  • [2] 纳智能器件

  • [3] 超声悬浮

  • [4] 太阳能光热利用

 

Personal Information

邓威,博士生导师,南航“长空学者”,江苏省“双创博士”,主要研究固液界面能量转换和纳智能材料器件等,相关成果发表在 EES, NSR, ACS Nano, Nano Lett., EST 等期刊。常年招收硕士和博士研究生。欢迎联系weidenguse(at)126.com .主要论文:(谷歌学术:https://scholar.google.com/citations?user=FI3DrXcAAAAJ&hl=en)Deng, W.*, Wang, Z., Wang, J., Hu, T., Wang, X., Li, X., Yin, J.*, Guo, W*, Floating droplet electricity generator on water, National Science Review, .2025, nwaf318.Deng, W., Zhu, Y., Zhang, K., Yuan, Y., Hu, T., Wang, X., Li, J., Li, X., Zhang, Z., Guo, W. and Yin, J.*, Collective Electricity Generation over the Kilovolt Level from Water Droplets, Nano Letters, 2025, 25, 7457–7464.Hu, T., Zhang, K., Deng, W.*, Guo, W.*, Hydrovoltaic Effects from Mechanical–Electric Coupling at the Water–Solid Interface, ACS Nano, 2024, 18, 23912−23940.Li, X.*, Feng, G., Chen, Y., Li, J., Yin, J., Deng, W.* and Guo, W.*, Hybrid hydrovoltaic electricity generation driven by water evaporation. Nano Research Energy, 2024, 3: e9120110.Deng, W., Feng, G., Li, L., Wang, X., Lu, H., Li, X., Li, J., Guo, W. and Yin, J., Capillary front broadening for water-evaporation-induced electricity of integrated one kilovolt. Energy & Environmental Science, 2023, 16, 4442-4452.Deng, W., Fan, T., Li, Y., "Water Wave Vibration-Promoted Solar Evaporation with Super High Productivity." Nano Energy, 2022, 106745.Deng, W., Fan, T., Li, Y., In situ biomineralization-constructed superhydrophilic and underwater superoleophobic PVDF-TiO2 membranes for superior antifouling separation of oil-in-water emulsions. Journal of Membrane Science,2021, 622, 119030.Deng, W., Li, Y., Novel superhydrophilic antifouling PVDF-BiOCl nanocomposite membranes fabricated via a modified blending-phase inversion method. Separation and Purification Technology,2021, 254, 117656.Deng, W., Li, C., Pan, F., Li, Y., Efficient Oil/Water Separation by A Durable Underwater Superoleophobic Mesh Membrane with TiO2 Coating Via Biomineralization. Separation and Purification Technology, 2019, 222, 35-44. Deng, W., Zhao, H., Pan, F., Feng, X., Jung, B., Abdel-Wahab, A., Batchelor, B., Li, Y., Visible-light-driven photocatalytic degradation of organic water pollutants promoted by sulfite addition, Environmental Science & Technology, 2017, 51, 13372-13379.Deng, W., Pan, F., Batchelor, B., Jung, B., Zhang, P., Abdel-Wahab, A., Zhou, H., Li, Y., Mesoporous TiO2–BiOBr microspheres with tailorable adsorption capacities for photodegradation of organic water pollutants: probing adsorption–photocatalysis synergy by combining experiments and kinetic modeling. Environmental Science: Water Research & Technology, 2019, 5, 769-781. Deng, W., Zhao, H., Pan, F., Feng, X., Jung, B., Abdel-Wahab, A., Batchelor, B., Li, Y., Response to Comment on “Visible-Light-Driven Photocatalytic Degradation of Organic Water Pollutants Promoted by Sulfite Addition”, Environmental Science & Technology,2018, 52, 1677-1678. Deng, W., Wang, Y., A dual resonant rectilinear-to-rotary oscillation converter for low frequency broadband electromagnetic energy harvesting, Smart Materials and Structures, 2017, 26, 095059. Deng, W., Wang, Y., Non-contact magnetically coupled rectilinear-rotary oscillations to exploit low-frequency broadband energy harvesting with frequency up-conversion, Applied Physics Letters, 2016, 109, 133903. Deng, W., Wang, Y., Systematic parameter study of a nonlinear electromagnetic energy harvester with matched magnetic orientation: Numerical simulation and experimental investigation, Mechanical Systems and Signal Processing, 2016, 85, 591-600.Deng, W., Wang, Y., Input-dependent performance study of a nonlinear piezoelectric energy harvester, Journal of Intelligent Material Systems and Structures, 2016, 28, 619-626.

  • Gender:Male
  • Alma Mater:德州农工大学
  • Education Level:With Certificate of Graduation for Doctorate Study
  • Degree:博士
  • Business Address:A9-412
  • E-Mail:
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