Biography

Prof. Ruey-Jen Yang

National Cheng Kung University, Chinese Taipei

Chair Professor Emeritus


Email: [email protected]


Qualifications

1982 Ph.D., University of California, Mechanical Engineering

1976 B.Sc., National Cheng Kung University, Engineering Science


Publications (Selected)

  1. Mai, Van-Phung & Fauziah, Amalia & Gu, Chuan-Ru & Yang, Zhen-Jie & Wu, Kevin C.-W & Yeh, Li-Hsien & Yang, Ruey-Jen. (2024). Two-dimensional metal–organic framework nanocomposite membranes with shortened ion pathways for enhanced salinity gradient power harvesting. Chemical Engineering Journal. 484. 149649. 10.1016/j.cej.2024.149649.
  2. Huang, Wei-Hao & Chang, Chih-Chang & Yang, Ruey-Jen. (2023). Effect of hydrodynamic slip on thermoelectric response in negatively-charged nanofluidic channels. International Journal of Heat and Mass Transfer. 214. 124454. 10.1016/j.ijheatmasstransfer.2023.124454.
  3. Mai, Van-Phung & Huang, Wei-Hao & Chang, Yong-Lin & Yang, Ruey-Jen. (2023). Composite GO@Silk membrane for capillary-driven energy conversion. Journal of Membrane Science. 671. 121403. 10.1016/j.memsci.2023.121403.
  4. Yeung, Woon-Shing & Hung, Fu-Sui & Mai, Van-Phung & Yang, Ruey-Jen. (2022). Analytical solution of cloaking in creeping flow inside composite porous media with simultaneous heat transfer. Journal of Mechanics. 38. 390-396. 10.1093/jom/ufac029.
  5. Mai, Van-Phung & Huang, Wei-Hao & Yang, Ruey-Jen. (2022). Charge Regulation and pH Effects on Thermo-Osmotic Conversion. Nanomaterials. 12. 2774. 10.3390/nano12162774.
  6. Mai, Van-Phung & Lee, Tsung-Yu & Yang, Ruey-Jen. (2022). Enhanced-performance droplet-triboelectric nanogenerators with composite polymer films and electrowetting-assisted charge injection. Energy. 260. 125173. 10.1016/j.energy.2022.125173.
  7. Yeung, Woon-Shing & Yang, Ruey-Jen. (2022). Introduction to Thermal Cloaking: Theory and Analysis in Conduction and Convection. 10.1007/978-981-16-7550-8.
  8. Thangavelu, M., Nagarajan, N., & Yang, R. J. (2021). Magnetohydrodynamic Effect on Thermal Transport by Silver Nanofluid Flow in Enclosure with Central and Lower Heat Sources. Heat Transfer Engineering, 43(20), 1755–1768. https://doi.org/10.1080/01457632.2021.2009226
  9. Mai, Van-Phung & Huang, Wei-Hao & Yang, Ruey-Jen. (2021). Enhancing Ion Transport through Nanopores in Membranes for Salinity Gradient Power Generation. ACS ES&T Engineering. XXXX. 10.1021/acsestengg.1c00309.
  10. Huang, W.-H., Mai, V.-P., Wu, R.-Y., Yeh, K.-L., & Yang, R.-J. (2021). A Microfluidic Aptamer-Based Sensor for Detection of Mercury(II) and Lead(II) Ions in Water. Micromachines, 12(11), 1283. https://doi.org/10.3390/mi12111283
  11. Yang, Fu-Yao & Hung, Fu-Sui & Yeung, Woon-Shing & Yang, Ruey-Jen. (2021). Optimization Method for Practical Design of Planar Arbitrary-Geometry Thermal Cloaks Using Natural Materials. Physical Review Applied. 15. 10.1103/PhysRevApplied.15.024010.
  12. Mai, Van-Phung & Lee, Tsung-Yu & Yang, Ruey-Jen. (2021). Enhanced-Performance Droplet-Triboelectric Nanogenerators with Composite Polymer Films and Electrowetting-Assisted Charge Injection. SSRN Electronic Journal. 10.2139/ssrn.3996857.
  13. Thangavelu, Mahalakshmi & Nagarajan, Nithyadevi & Öztop, Hakan & Yang, Ruey-Jen. (2020). MHD convection flow of Ag–water nanofluid in inclined enclosure with center heater. Journal of Mechanics. 37. 13-27. 10.1093/jom/ufaa003.
  14. Mai, Van-Phung & Yang, Ruey-Jen. (2020). Boosting power generation from salinity gradient on high-density nanoporous membrane using thermal effect. Applied Energy. 274. 115294. 10.1016/j.apenergy.2020.115294.
  15. Mai, Van-Phung & Yang, Ruey-Jen. (2020). Active control of salinity-based power generation in nanopores using thermal and pH effects. RSC Advances. 10. 18624-18631. 10.1039/D0RA02329A.
  16. Yeung, Woon-Shing & Yang, Fu-Yao & Yang, Ruey-Jen. (2020). Analysis of a trilayer thermal cloak. AIP Advances. 10. 055102. 10.1063/5.0005920.
  17. Sun, Yu-Yuan & Mai, Van-Phung & Yang, Ruey-Jen. (2020). Effects of electrode placement position and tilt angles of a platform on voltage induced by NaCl electrolyte flowing over graphene wafer. Applied Energy. 261. 114435. 10.1016/j.apenergy.2019.114435.
  18. Mai, VP., Ku, CH. & Yang, RJ. Porosity estimation using electric current measurements for paper-based microfluidics. Microfluid Nanofluid 23, 59 (2019). https://doi.org/10.1007/s10404-019-2226-x
  19. Fu, L.-M., Tseng, C.-C., Ju, W.-J., & Yang, R.-J. (2018). Rapid Paper-Based System for Human Serum Creatinine Detection. Inventions, 3(2), 34. https://doi.org/10.3390/inventions3020034
  20. Yang, Ruey-Jen & Tseng, Chin-Chung & Ju, Wei-Jhong & Wang, Hsiang-Li & Fu, Lung-Ming. (2018). A rapid paper-based detection system for determination of human serum albumin concentration. Chemical Engineering Journal. 352. 10.1016/j.cej.2018.07.022.


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