Kangho Lee, Ph.D.
Affiliations: | 2007 | Electrical and Computer Engineering | Purdue University, West Lafayette, IN, United States |
Area:
Electronics and Electrical EngineeringGoogle:
"Kangho Lee"Parents
Sign in to add mentorDavid B. Janes | grad student | 2007 | Purdue | |
(Molecular passivation of semiconductor surface for electronic biosensor devices.) |
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Publications
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Yim C, Lee K, McEvoy N, et al. (2016) High-Performance Hybrid Electronic Devices from Layered PtSe2 Films Grown at Low Temperature. Acs Nano |
Lee K, Nair PR, Scott A, et al. (2009) Device considerations for development of conductance-based biosensors. Journal of Applied Physics. 105: 102046 |
Lee K, Nair PR, Alam MA, et al. (2008) Electrical detection of the biological interaction of a charged peptide via gallium arsenide junction-field-effect transistors. Journal of Applied Physics. 103: 114510-1145107 |
Wampler HP, Zemlyanov DY, Lee K, et al. (2008) Mixed adlayer of alkanethiol and peptide on GaAs(100): quantitative characterization by X-ray photoelectron spectroscopy. Langmuir : the Acs Journal of Surfaces and Colloids. 24: 3164-70 |
Lee K, Lu G, Facchetti A, et al. (2008) Comparative passivation effects of self-assembled mono- and multilayers on GaAs junction field effect transistors Applied Physics Letters. 92 |
Ju S, Lee K, Yoon MH, et al. (2007) High performance ZnO nanowire field effect transistors with organic gate nanodielectrics: Effects of metal contacts and ozone treatment Nanotechnology. 18 |
Ju S, Lee K, Janes DB, et al. (2006) Erratum: “Proton radiation hardness of single-nanowire transistors using robust organic gate nanodielectrics” [Appl. Phys. Lett. 89, 073510 (2006)] Applied Physics Letters. 89: 139902 |
Ju S, Lee K, Janes DB, et al. (2006) Proton radiation hardness of single-nanowire transistors using robust organic gate nanodielectrics Applied Physics Letters. 89 |
Ju S, Lee K, Janes DB, et al. (2005) Low operating voltage single ZnO nanowire field-effect transistors enabled by self-assembled organic gate nanodielectrics. Nano Letters. 5: 2281-6 |
Choi J, Lee K, Janes DB. (2004) Nanometer scale gap made by conventional microscale fabrication: Step junction Nano Letters. 4: 1699-1703 |