Kwang J. Kim

Active Materials and Smart Living Laboratory

Surface Science

Surface wettability effect on nucleate pool boiling heat transfer with titanium oxide (TiO2) coated heating surface

Surface wettability effect on nucleate pool boiling heat transfer with titanium oxide (TiO2) coated heating surface
K. Yim, J. Lee, B. Naccarato, and K. J. Kim. International Journal of Heat and Mass Transfer 133, 352-358 (2019) [PDF] [DOI]

Anti-Biofouling, Thermal, and Electrical Performance of Nanocomposite Coating with Multiwall Carbon Nanotube and Polytetrafluoroethylene-Blended Polyphenylenesulfide

Anti-Biofouling, Thermal, and Electrical Performance of Nanocomposite Coating with Multiwall Carbon Nanotube and Polytetrafluoroethylene-Blended Polyphenylenesulfide
E. Yang, T. Hwang, A. Kumar, and K. J. Kim. Advances in Polymer Technology 37(3),843-849 (2016) [PDF] [DOI]

Dropwise Steam Condensation on Various Hydrophobic Surfaces: Polyphenylene Sulfide (PPS), Polytetrafluoroethylene (PTFE), and Self-assembled Micro/Nano Silver (SAMS)

Dropwise Steam Condensation on Various Hydrophobic Surfaces: Polyphenylene Sulfide (PPS), Polytetrafluoroethylene (PTFE), and Self-assembled Micro/Nano Silver (SAMS)
B. J. Zhang, C. Kuok, K. J. Kim, T. Hwang, and H. Yoon. International Journal of Heat and Mass Transfer 89,353-358 (2015) [PDF] [DOI]

Biologically Inspired Tunable Hydrophilic/Hydrophobic Surfaces:  A Copper Oxide Self-Assembly Multitier Approach

Biologically Inspired Tunable Hydrophilic/Hydrophobic Surfaces:  A Copper Oxide Self-Assembly Multitier Approach
B. J. Zhang, J. Park, K. J. Kim, H. Yoon. Bioinspiration & Biomimetics 7(3), 036011 (2012) [DOI] [PubMed]

Dropwise Condensation Modeling Suitable for Superhydrophobic Surfaces

Dropwise Condensation Modeling Suitable for Superhydrophobic Surfaces
S. Kim and K. J. Kim. Journal of Heat Transfer 133(8), 081502 (2011) [DOI]