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61
A simple method to control the diameter of carbon nanotubes and effect of the diameter in field emission
H. Y. Jung, S. M. Jung, L. Kim, J. S. Suh
Carbon (IF 6.196), 2008
62
Horizontally aligned carbon nanotube field emitters having a long term stability
S. M. Jung, H. Y. Jung, J. S. Suh
Carbon (IF 6.196), 2007
63
Chemical sensors for sensing gas adsorbed on the inner surface of carbon nanotube channels
H. Y. Jung, S. M. Jung, J. Kim, J. S. Suh
Applied Physics Letters (IF 3.302), 2007
64
Clean carbon nanotube field emitters aligned horizontally
S. M. Jung, J. Hahn, H. Y. Jung, J. S. Suh
Nano Letters (IF 13.592), 2006
65
Anodic aluminum oxide membrane bonded on a silicon wafer for carbon nanotube field emitter arrays
H. Y. Jung, S. M. Jung, G. H. Gu, J. S. Suh
Applied Physics Letters (IF 3.302), 2006
66
Fabrication of clean CNT field emitters
J. Hahn, S. M. Jung, H. Y. Jung, S. B. Heo, J. H. Shin, J. S. Suh
Applied Physics Letters (IF 3.302), 2006
67
Light transmission in carbon nanotube array: Fano-resonance analysis
H. Cho, H. Y. Jung, Q. Park, J. S. Suh, W. Jhe
Japanese Journal of Applied Physics, 2005
68
Fano-type transmission in carbon nanotube array with Al2O3
H. Cho, H. Y. Jung Q. Park, J. S. Suh, W. Jhe
Journal of Korean Physical Society, 2005
69
Well-ordered semiconducting linearly joined carbon nanotube devices at room temperature
H. Y. Jung, J. Kim, J. Hahn, J. S. Suh
Chemical Physics Letters (IF 2.337), 2005
70
Selective synthesis of high-purity carbon nanotubes by thermal plasma jet
J. Hahn, H. Y. Jung, D. W. Kang, J. Yoo, J. S. Suh
Carbon (IF 6.160), 2004
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