Ki-Bum Kim, Ph. D.

Affiliations: 
Materials Science and Engineering Seoul National University, Seoul, South Korea 
Website:
http://nfl.snu.ac.kr
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"Ki-Bum Kim"
Bio:

https://www.proquest.com/openview/5d907c551af94cca102e76276406cb4b/1

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Parents

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Robert Sinclair grad student 1983-1990 Stanford
 (Interfacial reaction in M/GaAs systems)
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Publications

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Kim GH, Lee J, Lee JY, et al. (2021) High-Resolution Colloidal Quantum Dot Film Photolithography via Atomic Layer Deposition of ZnO. Acs Applied Materials & Interfaces
Lee S, Kang YH, Kim MS, et al. (2020) Effect of Bilayer Period of Atomic Layer Deposition on the Growth Behavior and Electrical Properties of Amorphous In-Zn-O Film. Acs Applied Materials & Interfaces
Kim MS, Kim M, Son S, et al. (2020) Sheet Resistance Analysis of Interface-Engineered Multilayer Graphene: Mobility vs. Sheet Carrier Concentration. Acs Applied Materials & Interfaces
Kim M, Nabeya S, Han SM, et al. (2020) Selective Atomic Layer Deposition of Metals on Graphene for Transparent Conducting Electrode Application. Acs Applied Materials & Interfaces
Lee K, Park J, Kang JH, et al. (2020) Surface Modification of Solid-State Nanopore by Plasma-Polymerized Chemical Vapor Deposition of Poly(ethylene glycol) for Stable Device Operation. Nanotechnology
Kim MS, Cho SY, Kim M, et al. (2020) Comparison of Growth Behavior and Electrical Properties of Graphene Grown on Solid and Liquid Copper by Chemical Vapor Deposition. Journal of Nanoscience and Nanotechnology. 20: 316-323
Osgood R, Kang M, Kim KB, et al. (2019) Nanorectenna spectrally-selective plasmonic hot electron response to visible-light lasers. Nanotechnology
Lee S, Kim M, Cho SY, et al. (2019) Electrical properties of graphene/In2O3 bilayer with remarkable uniformity as transparent conducting electrode. Nanotechnology
Kim M, Nabeya S, Nandi DK, et al. (2019) Atomic Layer Deposition of Nickel Using a Heteroleptic Ni Precursor with NH and Selective Deposition on Defects of Graphene. Acs Omega. 4: 11126-11134
Kim M, Kim KJ, Lee SJ, et al. (2016) Highly Stable and Effective Doping of Graphene by Selective Atomic Layer Deposition of Ruthenium. Acs Applied Materials & Interfaces
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