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Nanotechnology|January 19, 2011
Highly sensitive hydrogen detection of catalyst-free ZnO nanorod networks suspended by lithography-assisted growthJunghwan Huh, Jonghyurk Park, Gyu Tae Kim, et al.
ACS Applied Materials & Interfaces|July 22, 2011
Asymmetric contacts on a single SnO₂ nanowire device: an investigation using an equivalent circuit modelJunghwan Huh, Junhong Na, Jeong Sook Ha, et al.
Biosensors & Bioelectronics|August 16, 2011
A sensitive diagnostic assay of rheumatoid arthritis using three-dimensional ZnO nanorod structureKeum-Young Ahn, Koochul Kwon, Junghwan Huh, et al.
Nanotechnology|August 17, 2016
Low frequency noise in single GaAsSb nanowires with self-induced compositional gradientsJunghwan Huh, Dong-Chul Kim, A Mazid Munshi, et al.
Physical Chemistry Chemical Physics : PCCP|May 11, 2017
Triethanolamine doped multilayer MoS<sub>2</sub> field effect transistorsMin-Yeul Ryu, Ho-Kyun Jang, Kook Jin Lee, et al.
Nano Letters|April 23, 2016
In Situ Heat-Induced Replacement of GaAs Nanowires by AuVidar T Fauske, Junghwan Huh, Giorgio Divitini, et al.
Nano Letters|March 6, 2018
Single-Mode Near-Infrared Lasing in a GaAsSb-Based Nanowire Superlattice at Room TemperatureDingding Ren, Lyubomir Ahtapodov, Julie S Nilsen, et al.
Nano Letters|May 6, 2015
Rectifying Single GaAsSb Nanowire Devices Based on Self-Induced Compositional GradientsJunghwan Huh, Hoyeol Yun, Dong-Chul Kim, et al.
Nanotechnology|November 6, 2010
Degradation pattern of SnO(2) nanowire field effect transistorsJunhong Na, Junghwan Huh, Sung Chan Park, et al.
Nanoscale|November 12, 2013
Low-frequency noise in multilayer MoS2 field-effect transistors: the effect of high-k passivationJunhong Na, Min-Kyu Joo, Minju Shin, et al.
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