Hyoung J. Cho, Ph.D.
Affiliations: | 2002 | University of Cincinnati, Cincinnati, OH |
Area:
Electronics and Electrical Engineering, Materials Science EngineeringGoogle:
"Hyoung Cho"Parents
Sign in to add mentorChong H. Ahn | grad student | 2002 | University of Cincinnati | |
(Micromachined permanent magnets and their MEMS applications.) |
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Publications
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Pathak P, Park S, Cho HJ. (2020) A Carbon Nanotube-Metal Oxide Hybrid Material for Visible-Blind Flexible UV-Sensor. Micromachines. 11 |
Karbalaei A, Kumar R, Cho HJ. (2016) Thermocapillarity in Microfluidics-A Review. Micromachines. 7 |
Bae YM, Lee KH, Yang J, et al. (2014) Hydrogel-based capillary flow pumping in a hydrophobic microfluidic channel Japanese Journal of Applied Physics. 53 |
McCormack R, Shirato N, Singh U, et al. (2012) Laser irradiated nano-architectured undoped tin oxide arrays: mechanism of ultrasensitive room temperature hydrogen sensing. Nanoscale. 4: 7256-65 |
Singh U, Lee HA, Byun Y, et al. (2011) ZnO Modified High Aspect Ratio Carbon Electrodes for Hydrogen Sensing Applications Procedia Engineering. 25: 1669-1672 |
Zhang P, Vincent A, Seal S, et al. (2009) Nano sensor design for hydrogen detection Proceedings of Spie. 7318 |
Chunder A, Etcheverry K, Londe G, et al. (2009) Conformal switchable superhydrophobic/hydrophilic surfaces for microscale flow control Colloids and Surfaces a: Physicochemical and Engineering Aspects. 333: 187-193 |
Pang H, Cho HJ, Likamwa PL. (2008) On-chip surface plasmon resonance sensor. Journal of Nanoscience and Nanotechnology. 8: 4968-71 |
SHUKLA S, ZHANG P, CHO H, et al. (2008) Significance of electrode-spacing in hydrogen detection for tin oxide-based MEMS sensor International Journal of Hydrogen Energy. 33: 470-475 |
Deshpande S, Seal S, Zhang P, et al. (2007) Electrode architecture in tuning room temperature sensing kinetics of nanomicrointegrated hydrogen sensor Applied Physics Letters. 90: 073118 |