FACULTY


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Gao, Jiao 

  • Positional Title: Associated Professor

  • Email: gaojiao@scut.edu.cn

  • Working For: Shien-Ming Wu School of Intelligent Engineering

  • Zip Code: 510640

  • Graduated School: University of Tokyo, Ph.D.

  • Office: D1-a527

  • Final Degree: Ph.D.

  • Telephone:

  • Mentor Type:

Personal profile  

Dr Gao is currently an Associate Professor with the Shien-Ming Wu School of Intelligent Engineering, South China University of Technology.

There are two main research topics in the lab: one is about the characterization and modification of porous materials such as metal-organic frameworks, and their possible applications in sensors and smart medicine; the other is focused on the design and fabrication of various bionic surfaces, and the analysis of their structural properties in micro/nano scale.

If you are interested, welcome to contact us by email!

Work Experience  

  • 2021-2022 Research Fellow, Graduate School of Engineering, the University of Tokyo;

  • 2022-Present, Associate Professor, Shien-Ming Wu School of Intelligent Engineering, South China University of Technology.

Education  

  • 2011-2015 B. Sc., School of Mechanical and Automotive Engineering, South China University of Technology

  • 2015-2018 M.Eng., School of Mechanical and Automotive Engineering, South China University of Technology

  • 2016-2018 M.Eng., Graduate School of Information, Production and Systems, Waseda University

  • 2018-2021 Ph.D., Graduate School of Engineering, the University of Tokyo

Research Interest  

  • Metal-organic frameworks; porous materials; drug sorption-desorption; physiological signal detection;

  • Bionic functional surface; laser processing/de-alloying; superhydrophobic/anti-adhesion/self-lubrication; micro-nano scale;

Courses

  • Heat transfer

  • Advanced manufacturing system

Selected Publications  

  • [1] Lu L.S., Gao J.*, et al. Superhydrophobic purple orchid leaves: the variation in surface morphology during the vegetation stages result in the diversity of wettability. In process.

  • [2] Gao J., et al. Confinement effect of two cages in MIL-101(Cr) on water freezing behaviors. ACS Applied Materials & Interfaces. In process.

  • [3] Gao J., et al. Rapid and accurate measurement of near-ambient temperature by near-infrared vibrational water transmission spectroscopy. IEEE Sensors Journal. In process.

  • [4] Fei S.B., Gao, J., et al. Temperature effect on water adsorption and desorption processes in the mesoporous metal-organic framework MIL-101(Cr). Journal of Physical Chemistry C, 2022, 126(36), 15538-15546.

  • [5] Gao J., et al. Water confined in MIL-101(Cr): unique sorption-desorption behaviors revealed by diffuse reflectance infrared spectroscopy and molecular dynamics simulation. Journal of Physical Chemistry C, 2021, 125(32), 17786-17795.

  • [6] Gao J., et al. The effect of electrical charge density on the transition behavior between bonding and clogging stages of an electroplated porous surface. Journal of Materials Processing Technology, 2019, 271, 1-9.

  • [7] Gao J., et al. Enhanced boiling performance of a nanoporous copper surface by electrodeposition and heat treatment. Heat and Mass Transfer, 2017, 53(3), 947-958.

  • [8] Liu X.K., Yang F., Gao J., et al. Fuzzy comprehensive quality evaluation of chopped carbon fiber based on entropy weight. Journal of South China University of Technology (Natural Science Edition), 2016, 44(6), 59-64.

Patents    

  • [1]. Lu L.S., Gao J., et al. 2018. Metal porous surface structure, preparation method thereof and inlay electroplating device. Chinese Patent, CN105442004B.

  • [2]. Lu L.S., Gao J., et al. 2016. Preparation metal porous surface texture inlays electroplating device. Chinese Patent, CN205329189U.