Structures of ultrathin copper nanowires encapsulated in carbon nanotubes WY Choi, JW Kang, HJ Hwang Physical Review B 68 (19), 193405, 2003 | 138 | 2003 |
Mechanical deformation study of copper nanowire using atomistic simulation JW Kang, HJ Hwang Nanotechnology 12 (3), 295, 2001 | 131 | 2001 |
Tuning ionic liquids for hydrate inhibition KS Kim, JW Kang, SP Kang Chemical Communications 47 (22), 6341-6343, 2011 | 118 | 2011 |
Nanoscale carbon nanotube motor schematics and simulations for micro-electro-mechanical machines JW Kang, HJ Hwang Nanotechnology 15 (11), 1633, 2004 | 117 | 2004 |
Copper nanocluster diffusion in carbon nanotube HJ Hwang, OK Kwon, JW Kang Solid State Communications 129 (11), 687-690, 2004 | 107 | 2004 |
Gigahertz actuator of multiwall carbon nanotube encapsulating metallic ions: molecular dynamics simulations JW Kang, HJ Hwang Journal of applied physics 96 (7), 3900-3905, 2004 | 105 | 2004 |
Nanotube oscillator based on a short single-walled carbon nanotube bundle JW Kang, KO Song, HJ Hwang, Q Jiang Nanotechnology 17 (9), 2250, 2006 | 100 | 2006 |
Comparison of C60 encapsulations into carbon and boron nitride nanotubes JW Kang, HJ Hwang Journal of Physics: Condensed Matter 16 (23), 3901, 2004 | 100 | 2004 |
Fullerene nano ball bearings: an atomistic study JW Kang, HJ Hwang Nanotechnology 15 (5), 614, 2004 | 89 | 2004 |
Carbon-nanotube-based nanoelectromechanical switch HJ Hwang, JW Kang Physica E: Low-dimensional Systems and Nanostructures 27 (1-2), 163-175, 2005 | 75 | 2005 |
Carbon nanotube oscillator operated by thermal expansion of encapsulated gases JW Kang, KO Song, OK Kwon, HJ Hwang Nanotechnology 16 (11), 2670, 2005 | 73 | 2005 |
Pentagonal multi-shell Cu nanowires JW Kang, HJ Hwang Journal of Physics: Condensed Matter 14 (10), 2629, 2002 | 70 | 2002 |
Carbon nanotubes as nanopipette: modelling and simulations HJ Hwang, KR Byun, JW Kang Physica E: Low-dimensional Systems and Nanostructures 23 (1-2), 208-216, 2004 | 64 | 2004 |
Enhanced transbuccal salmon calcitonin (sCT) delivery: effect of chemical enhancers and electrical assistance on in vitro sCT buccal permeation DH Oh, KH Chun, SO Jeon, JW Kang, S Lee European journal of pharmaceutics and biopharmaceutics 79 (2), 357-363, 2011 | 62 | 2011 |
Molecular dynamics study on the bending rigidity of graphene nanoribbons JW Kang, S Lee Computational Materials Science 74, 107-113, 2013 | 61 | 2013 |
Unusual synergy effect on methane hydrate inhibition when ionic liquid meets polymer SP Kang, ES Kim, JY Shin, HT Kim, JW Kang, JH Cha, KS Kim RSC Advances 3 (43), 19920-19923, 2013 | 61 | 2013 |
Atomistic study of III-nitride nanotubes JW Kang, HJ Hwang Computational materials science 31 (3-4), 237-246, 2004 | 59 | 2004 |
Electrostatically telescoping nanotube nonvolatile memory device JW Kang, Q Jiang Nanotechnology 18 (9), 095705, 2007 | 58 | 2007 |
A Bucky shuttle three-terminal switching device: classical molecular dynamics study JW Kang, HJ Hwang Physica E: Low-dimensional Systems and Nanostructures 23 (1-2), 36-44, 2004 | 57 | 2004 |
Bucky shuttle memory system based on boron-nitride nanopeapod WY Choi, JW Kang, HJ Hwang Physica E: Low-dimensional Systems and Nanostructures 23 (1-2), 135-140, 2004 | 56 | 2004 |