2022 |
137
|
Jonguk Yang and Sanghyun Ju, "Washable and stretchable fiber with heat and ultraviolet color conversion", RSC Advances, 12, 22351-22359, 2022.
|
136
|
Jeong Hui Lee, Taekyung Lim, Keumyoung Seo, Jeeyin Park, Jonguk Yang, Sang-Mi Jeong and Sanghyun Ju, "Rapid mold-free fabrication of long functional PDMS fibers", NPG Asia Materials, 14(0), 13 (2022), 2022.
|
135
|
Jonguk Yang, Youngsoo Kang, Sang-Mi Jeong, Keumyoung Seo, Taekyung Lim, and Sanghyun Ju, "Virtual Infrared Display on Flexible and Transparent Substrate", Advanced Materials Interfaces, 9(6), 2102058, 2022.
|
2021 |
134
|
Sang-Mi Jeong1, Minkyun Son, Youngsoo Kang, Jonguk Yang, Taekyung Lim and Sanghyun Ju, "Development of multi-angle fiber array for accurate measurement of flexion and rotation in human joints", npj Flexible Electronics, 35(2021), 2021.
|
133
|
Jeong Hui Lee, Jeeyin Park, Jonguk Yang, Keun-Hyeok Yang, Sanghyun Ju, Taekyung Lim, and Sang-Mi Jeong, "Hydrophobic halochromic aerogel capable of reversibly measuring acidic and basic vapors", AIP Advance, vol.11, p.115115, 2021.
|
132
|
Sang-Mi Jeong, Jonguk Yang, Jeong Hyeok Pak, Keumyoung Seo, Taekyung Lim, and Sanghyun Ju, "Real-Time Information-Variable Invisible Barcode Comprising Freely Deformable Infrared-Emitting Yarns", ACS Applied Materials & Interfaces, 13, 34, p. 40157-41362, 2021.
|
131
|
Yong Kyu Choi, Jeong Hyeok Pak, Keumyoung Seo, Sang-Mi Jeong, Taekyung Limb, Sanghyun Ju, "Realization of infrared display images using infrared laser projection method", Optics and Lasers in Engineering, vol.145, 106677, 2021.
|
130
|
Jonguk Yang, Taekyung Lim, Sang-Mi Jeong, and Sanghyun Ju, "Information-Providing Flexible and Transparent Smart Window Display", ACS Applied Materials & Interfaces, 2021, 13, 17, 20689-20697, 2021.
|
129
|
Yong Kyu Choi, Taekyung Lim, Sang-Mi Jeong, Jeong Hyeok Pak and Sanghyun Ju, "Double-sided infrared display using an opaque substrate based on infrared image recognition mechanism", AIP Advances, vol.11, 5.0040892, 2021.
|
128
|
Taekuk Hong, Yong Kyu Choi, Taekyung Lim, Keumyoung Seo, Sang-Mi Jeong, and Sanghyun Ju, "Elastic Halochromic Fiber as a Reversible pH Sensor", Advanced Materials Technologies, vil.6, 2001058, 2021.
|
127
|
Jeeyin Park, Taekyung Lim, Keun-Hyeok Yang, Sanghyun Ju and Sang-Mi Jeong, "Dipping-Press Coating Method for Retaining Transparency and
Imparting Hydrophobicity Regardless of Plastic Substrate Type", polymers, 13(3), 403, 2021.
|
2020 |
126
|
Youngsoo Kang and Sanghyun Ju, "Tuning the Threshold Voltage of a SnO2 Nanowire Transistor Through
Microwave-assisted Metal-oxide Reduction", Journal of the Korean Physical Society, Vol.77, No.11, pp.1002, 2020.
|
125
|
Taekyung Lim, Jeong Hui Lee, Ju-Hyun Mun, Keun-Hyeok Yang, Sanghyun Ju, and
Sang-Mi Jeong, "Enhancing Functionality of Epoxy–TiO2-Embedded
High-Strength Lightweight Aggregates", polymers, 12(10), 2384, 2020.
|
124
|
Youngsoo Kang, Sanghyun Ju, "Superhydrophobic SnO2 nanowire/graphene heterostructure-based ultraviolet detectors", Journal of Vacuum Science & Technology B, 38, 062210 (2020), 2020.
|
123
|
Yong Kyu Choi,
Young Joon Yoo,
Sang Yoon Park,
Taekyung Lim,
Sang-Mi Jeong,
and Sanghyun Ju, "Metastructure-inspired ultraviolet and blue light filter", AIP Advances, 10, 105015, 2020.
|
122
|
Taekyung Lim, Tae Kyung Lee, Sang-Mi Jeong, Jeong Hyeok Pak, Yong Kyu Choi, Sang Kyu Kwak, Sanghyun Ju, "Infrared emitting material using infrared wavelength manipulation", Applied Materials Today, vol.21, 100811, 2020.
|
121
|
Taekyung Lim, Keumyoung Seo, Sang-Mi Jeong, and Sanghyun Ju, "Regeneration of a metal oxide catalyst with polyvinylpyrrolidone under xenon flash irradiation for repetitive hydrogen generation", AIP Advances, 10, 085319 (2020), 2020.
|
120
|
Taekuk Hong, Sang-Mi Jeong, Yong Kyu Choi, Taekyung Lim and Sanghyun Ju, "Superhydrophobic, Elastic, and Conducting Polyurethane-Carbon Nanotube–Silane–Aerogel Composite Microfiber", polymers, 2020, 12, 1772, 2020.
|
119
|
Youngsoo Kang, and Sanghyun Ju, "Control of the threshold voltage of polyvinylpyrrolidone-coated SnO2 nanowire transistor using xenon flash light irradiation", AIP Advances, 10, 025304 (2020), 2020.
|
118
|
Taekyung Lim, Sang-Mi Jeong, Keumyoung Seo, Jeong Hyeok Pak, Yong Kyu Choi, Sanghyun Ju, “Development of fiber-based active thermal infrared camouflage textile,” Applied Materials Today, vol. 20, 2020
|
117
|
S.-M. Jeong, J. Ahn, Y. K. Choi, T. Lim, K. Seo, T. Hong, G. H. Choi, H. Kim, B. W. Lee, S. Y. Park & S. Ju*, “Development of a wearable infrared shield based on a polyurethane–antimony tin oxide composite fiber,” NPG asia materials, vol. 12, p. 32, 2020
|
116
|
J. H. Pak, S.-M. Jeong, T. Lim, and S. Ju*, “Pulsed‐Laser‐Induced IR Stereoscopic Imaging,” Advanced Optical Materials, vol. 2020, p. 1901706, 2020.
|
2019 |
115
|
Sang-Mi Jeong, Taekyung Lim, Jeeyin Park, Chang-Yeol Han, Heesun Yang & Sanghyun Ju, "Pen drawing display", NATURE COMMUNICATIONS, 10, Article number: 4334, 2019.
|
114
|
T. Lim, S.-M. Jeong, Y. Kang, and S. Ju*, “Light‐Liquid Selective Filter‐Mounted Nanowire‐Networked Polyurethane Fiber for an Ultraviolet Sensor,” Advanced Materials Interfaces, vol. 2019, p. 1901015, 2019.
|
113
|
Taekyung Lim, Sang-Mi Jeong, Sanghyun Ju, Keun-Hyeok Yang, Ok Sung Jeon and Sang Yoon Park, Young Joon Yoo, "Distance Effect of Heat Flux Based on Thermal Metamaterials", Journal of the Korean Physical Society, vol.75, 1028(1032), 2019.
|
112
|
T. Lim, Y. Kang, S.-M. Jeong, C.-H. Kim, S.-M. Kim, S. Y. Park, M.-H. Yoon and S. Ju*, “Human sweat monitoring using polymer-based fiber ,” Scientific Reports, vol. 9, p. 17294, 2019.
|
111
|
W. Jeong, S.-M. Jeong, T. Lim, C.-Y. Han, H. Yang, B. W. Lee, S. Y. Park, and S. Ju*, “Self-Emitting Artificial Cilia Produced by Field Effect Spinning,” ACS Applied Materials & Interfaces, vol. 11, p. 35286-35293, 2019.
|
110
|
J. R. Choi*, and S. Ju, “Analyzing the geometric phase for self-oscillations in field emission nanowire mechanical resonators,” Nonlinear Dynamics, vol.97, p.599-608, 2019
|
109
|
J. R. Choi*, and S. Ju, “Analysis of the geometric resonator superconducting Fabry-Perot resonator,” Scientific Reports, vol.9, p.8428, 2019
|
108
|
Y. S. Choi, C.-S. Yeo, S. J. Kim, J.-Y. Lee, Y. Kim, K. R. Cho, S. Ju, B. H. Hong, and S. Y. Park*, “Multifunctional reduced graphene oxide-CVD graphene core–shell fibers,” Nanoscale, vol.11, p.12637-12642, 2019
|
107
|
J. Ahn, T. Lim, C. S. Yeo, T. H., S.-M. Jeong, S. Y. Park, and S. Ju*, “Infrared Invisibility Cloak Based on Polyurethane–Tin oxide Composite Microtubes,” ACS Applied Materials & Interfaces, vol.11, p.14296-14304, 2019
|
106
|
T. Lim, and S. Ju*, “Development of a selectively liquid-blocking and vapor-passage microfilter based on polyurethane-aerogel microfibers,” AIP Advances, vol. 9, p. 045218, 2019
|
105
|
T. Lim, and S. Ju*, “Control of adiabatic properties using thermal meta-structures,” AIP Advances, vol. 9, p. 045111, 2019
|
104
|
K. Seo, T. Lim, S.-M. Jeong, and S. Ju*, “Reduction of three-dimensional metal oxides for hydrogen regeneration using ultraviolet laser irradiation,” Mater. Res. Express, vol 6, p. 066507, 2019
|
103
|
H.-J. Cho, S.-M. Jeong, T. Lim, and S. Ju*, “Mechanical and electrical response variation of polyurethane-tin oxide-carbon nanotube composite microfiber depending on chemical solution,” Journal of Polymer Science, Part A: Polymer Chemistry, vol 57, p. 495-502, 2019
|
102
|
J. R. Choi* and S.
Ju, “Properties of the Geometric Phase in Electromechanical Oscillations of
Carbon-Nanotube-Based Nanowire Resonators,” Nanoscale Res. Lett., vol. 14, p. 44,
2019
|
2018 |
101
|
Sang-Mi Jeong, Youngsoo Kang, Taekyung Lim, and Sanghyun Ju, "Hydrophobic Microfiber Strain Sensor Operating Stably in Sweat and Water Environment", Adv. Mater. Interf., vol 5, p. 1801376, 2018. 
[inside cover image]
|
100
|
J. R. Choi* and S.
Ju, “Quantum Characteristics of a Nanomechanical Resonator Coupled to a
Superconducting LC Resonator in Quantum Computing Systems,” Nanomaterials, vol. 9, p. 20,
2018.
|
99
|
K. Seo, S.-M. Jeong, T. Lim, and S. Ju*, “Continuous hydrogen regeneration through oxygen vacancy control of metal oxides using microwave irradiation,” RSC Adv., vol. 8, p. 37958-37964, 2018.
|
98
|
T. Lim, S.-M. Jeong, J.–H. Mun, K.–H. Yang, S. Y. Park, Y. J. Yoo, and S. Ju*, “Heat flux effect of thermal metamaterials,” AIP Advances, vol. 8, p. 105231, 2018.
|
97
|
Y. Kang, and S. Ju*, “Graphene-filter-mounted tin-oxide-nanowire-transistor for chemical sensor,” Semiconductor Science and Technology, vol. 33, p. 125013, 2018.
|
96
|
M.-H. Yoon, Y. Kim, T. Lim, C.-H. Kim, C. S. Yeo, K. Seo, S.-M. Kim, S. Y. Park, S. Ju, and J. Kim, “Organic Electrochemical Transistor-Based Channel Dimension-Independent Single-Strand Wearable Sweat Sensors,” NPG Asia Materials, vol 10, p. 1086-1095, 2018.
[Featured Article]
|
95
|
S.-M. Jeong, Y. Kang, T. Lim, and S. Ju*, “Chemically reactive polyurethane-carbon nanotube fiber with aerogel-microsphere-thin-film selective filter,” Adv. Mater. Interf., vol 5, p. 1800935, 2018. [Inside cover image]
|
94
|
T. Lim, Y. Kang, S.-M. Jeong, and S. Ju*, “Thermally nonreactive and chemically reactive metal-oxide-nanowire transistor covered with aerogel-microsphere-thin-film-based selective filter,” Mater. Res. Express, vol. 5, p. 116402, 2018.
|
93
|
T. Q. Trung, H. S. Le, T. M. L. Dang, S. Ju, S. Y. Park, and N.-E. Lee*, “Freestanding, fiber-based, wearable temperature sensor with tunable thermal index for healthcare monitoring,” Adv. Healthcare Mater., vol. 2018, p. e1800074, 2018.
|
92
|
K. Seo, T. Lim, S.-M. Jeong and S. Ju*, “Oxygen release from metal oxide for repeated hydrogen regeneration by proton irradiation with polyvinylpyrrolidone,” RSC Adv., vol. 8, p. 18525-18530, 2018.
|
91
|
J. Bong, J. H. Park, T. Lim, S. J. Kang, S. K. Kwak and S. Ju*, “Contact angle analysis for the prediction of defect states of graphene grafted with functional groups,” Adv. Mater. Interf., online, 2018.  [Cover image]
|
90
|
K. Seo, H. Kim, T. Lim and S. Ju*, “Repeatable hydrogen generation of 3D microporous nickel membrane using chemical milling,” J. Phys. D: Appl. Phys., vol. 51, p. 185501 (6pp), 2018.
|
89
|
T. Lim, and S. Ju*, “Detection of chemicals in water using an oxide nanowire transistor covered with an aerogel microsphere thin film as a liquid-vapor separation filter,” JKPS, vol. 72, p. 144-150, 2018.
|
2017 |
88
|
C. S. Yeo, H. Kim, T. Lim, H. J. Kim, S. Cho, K. R. Cho, Y. S. Kim, M. K. Shin, J. Yoo*, S. Ju* and S. Y. Park*, “Copper-embedded reduced graphene oxide fibers for multi-sensors,” J. Mater. Chem. C, vol. 5, p. 12825-12832, 2017.
|
87
|
V. Ramkumar and S. Ju*, “Quantum-dot and polychalcone mixed nanocomposites for polymer light-emitting diodes,” J. Nanomater., vol. 2017, Article ID 8739193, 2017.
|
86
|
T. Lim and S. Ju*, “Control of graphene surface wettability by using CF4
plasma,” Surf. Coat. Technol., vol. 328, p. 89-93, 2017.
|
85
|
T. Lim and S. Ju*, “Thermochemical hydrogen generation of indium oxide thin films,” AIP Adv., vol. 7, p. 035207, 2017.
|
84
|
T. Lim, J. Lee, J. Lee, and S. Ju*,
“Detection of chemicals in water using a three dimensional graphene porous
structure as a liquid-vapor separation filter,” Nano Res., vol. 10(3), p.
971-979, 2017.
|
83
|
H. J. Kim, S.-Y. Lee, L. H. Sinh, C. S.
Yeo, Y. R. Son, K. R. Cho, Y. Song, S. Ju, M. K. Shin, S.-J. Park, S. Park, “Maximizing
volumetric energy density of all-graphene-oxide-supercapacitors and their
potential applications for energy harvest,” Jour. of Power Source, vol. 346, p.
113-119, 2017.
|
82
|
V. Ramkumar and S. Ju*, “Fine-tuning
of blue-emitting pyrazoline using phenyl and thiophene terminal group
substituents”, Opt. Mater. Express, vol 7, p. 185-194, 2017.
|
81
|
J. Bong, J. Lee,
J. Lee, Y.-G. Ha, S. Ju*, “Development of omniphobic behavior in
molecular self-assembled monolayer-coated nanowire forests,” J. Biomed. Mater. Res. B - Appl.
Biomater., vol 105, p. 204-210,
2017.
|
80
|
T. Lim and S. Ju*, “Control
of positive and negative threshold voltage shifts using ultraviolet and
ultraviolet-ozone irradiation,” Curr.
Appl. Phys., vol 17, p. 262-266,
2017.
|
2016 |
79
|
TK Lim, JH Lee, JY Kim, SW Seo, and SH
Ju, “Detection of chlorobenzene in water using a wettability-controlled
three-dimensional graphene selective filter,” Appl. Phys. Express, vol 10,
p. 015101, 2016.
|
78
|
J. Lee, J. Han, C. S. Yeo, T. Lim, S.
Park, and S. Ju*, “Observation of a water droplet motion by using
oxide nanowire transistor covered by a nanofiber mesh,” Nanotechnology, vol 27, p. 505203, 2016.
|
77
|
S. Y. Lee, Z. Hanif, K. Seo, T. Lim, H.
M. Shin, S. J. Park, S. H. Kim, S. K. Kwak, S. W. Hong, M. H. Yoon, and S. Ju*,
“Hydrogen production based on photoactivated nanowire-forest,” J. Mater. Chem. A, Coverpage, vol 4, p. 14988-14995, 2016
|
76
|
T. Lim, J. Lee, and S. Ju*, “Detection
of chemical substances in water using an oxide nanowire transistor covered with
a hydrophobic nanoparticle thin film as a liquid-vapour separation filter,” APL Materials, vol 4, p. 86110, 2016.
|
75
|
J. Bong, C. Ahn, T. Lim, J. H. Park, S. K. Kwak, S. Jeon, S. Ju*,
“Controlled three-dimensional interconnected capillary structures for liquid
repellency engineering,” RSC Adv., vol. 6, p. 61909-61914, 2016.
|
74
|
Y. K. Hong, G. Yoo, J. Kwon, S. Hong, W. G. Song, N. Liu, I. Omkaram, B. Yoo, S. Ju, S. Kim, M. S. Yoo, “High performance and transparent multilayer MoS2 transistors: Tuning Schottky barrier characteristics,” AIP Adv., vol. 6, p. 055026, 2016.
|
73
|
J. Han, J. Lee, S. Ju*, “Fabrication of
flexible ultraviolet photodetectors by using all-spray-coating process,” AIP Adv., vol. 6, p. 045218, 2016.
|
72
|
K Seo, T. Lim, E. M. Mills, S. Kim, S.
Ju*, “Hydrogen generation enhanced by nano-forest structures,” RSC Adv., vol. 6, p. 12953-12958, 2016.
|
2015 |
71
|
J. Bong, T. Lim, K. Seo,
C.-A. Kwon, J.H. Park, S.K. Kwak, S. Ju*, “Dynamic graphene filters
for selective gas-water-oil separation,” Sci.
Rep., vol. 5, Article no. 14321,
2015.
|
70
|
Y. J. Yoo, S. Ju, S. Y.
Park, Y. J. Kim, J. Bong, T. Lim, K. W. Kim, J. Y. Rhee, Y. P. Lee, “Metamaterial absorber for electromagnetic waves in periodic
water droplets,” Sci. Rep., vol. 5, Article no. 14018, 2015.
|
69
|
J.-H. Park, T. Lim, J. Baik, K. Seo, Y. Moon, N. Park, H.-J. Shin, S. K. Kwak, S. Ju*, J. R. Ahn,
“Seamless lamination of a concave-convex
architecture with single-layer graphene,” Nanoscale,
vol. 7, p. 18138-18146, 2015.
|
68
|
T. Lim, J. Bong, E. M.
Mills, S. Kim, S. Ju*, “Highly
stable operation of metal-nanowire transistors in ambient humidity, water,
blood, and oxygen,” ACS Appl. Mater.
Interfaces, vol. 7, p. 16296, 2015.
|
67
|
T. Lim, C. S. Kim, M. Song,
S. Y. Ryu, S. Ju*, “Organic
solar cells with surface-treated graphene thin film as interfacial layer,” Synthetic Met., vol. 205, p. 1, 2015.
|
66
|
T. Lim, J. Han, K. Seo,
M.-K. Joo, J.-S. Kim, W.-Y. Kim, G.-T. Kim, S. Ju*, “Fabrication of controllable and stable In2O3
nanowire transistors using an octadecylphosphonic acid self-assembled monolayer,”
Nanotechnology, vol. 26, p. 145203, 2015.
|
65
|
J. Lee, J. Bong, Y.-G. Ha,
S. Park, S. Ju*, “Durability
of self-assembled monolayers on aluminum oxide surface for determining surface
wettability,” Appl. Surf. Sci., vol. 330, p. 445, 2015.
|
64
|
J. Han, J. Bong, T. Lim,
K.-H. Lee, H. Yang, S. Ju*, “Water repellent spray-type encapsulation of quantum dot
light-emitting diodes using super-hydrophobic self-assembled nanoparticles,” Appl. Surf. Sci., vol. 353, p. 338, 2015.
|
63
|
K.
Seo, J. Bong, J.-W. Kim, Y.-H. Shin, Y. Kim, S. Ju*, “Substrate-dependent differences in the crystal structures
and optical properties of ZnSe nanowires,” J.
Nanomater., vol. 2015, Article
ID 201420, 2015.
|
2014 |
62
|
J.-T. Seo,
J. Han, T. Lim, K.-H. Lee, J. Hwang, H. Yang, S. Ju*, “Fully transparent quantum dot
light-emitting diode integrated with graphene anode and cathode,” ACS Nano, vol. 8(12),
p. 12476, 2014.
|
61
|
B. Jin, T. Lim, S. Ju, M.
I. Latypov, H. S. Kim, M. Meyyappan, J.-S. Lee, “Ga-doped indium oxide nanowire
phase change random access memory cells,” Nanotechnology, vol. 25, p. 0055205, 2014.
|
60
|
B. Jin, T. Lim, S. Ju, M.
I. Latypov, D.-H. Pi, H. S. Kim, M. Meyyappan, J.-S. Lee, “Investigation of thermal resistance and power consumption
in Ga-doped indium oxide (In2O3) nanowire phase change
random access memory,” Appl. Phys. Lett.,
vol. 104(10), p. 103510, 2014.
|
59
|
J. Han, T. Lim, J. Bong, K.
Seo, S. Kim, S. Ju*, “Nanowire-based
ternary transistor by threshold-voltage manipulation,” Appl. Phys. Lett., vol.
104(14), p. 143509, 2014.
|
58
|
D. Kim, W. Choi, M. Kim, J.
Moon, K. Seo, S. Ju, W. Choi, “Implementing
transmission eigenchannels of disordered media by a binary-control digital
micromirror device,” Opt. Commun., vol. 330, p. 35, 2014.
|
57
|
K. Seo, D. Kim, M. W. Jung,
K.-S. An, S. Ju*, “Semiconducting
channel self-imposed in metallic graphene using an oxygen ion reacting,” JKPS, vol. 64(2), p. 283-288, 2014.
|
56
|
J.-T. Seo, J. Bong, J. Cha,
T. Lim, J. Son, S. H. Park, J. Hwang, S. Hong, S. Ju*, “Manipulation of graphene work function using a
self-assembled monolayer,” J. Appl.
Phys., vol. 116, p. 084312, 2014.
|
55
|
J. Bong,
K. Seo, J.-H. Park, J. R. Ahn, S. Ju*, “Wettability of graphene-laminated
micropillar structures,” J. Appl. Phys., vol.
116(23), p. 234303, 2014.
|
2013 |
54
|
J. Bong, D. Kim, H. Kim, S.
Lee, S. Ju*, “Bacteria
repellent properties of trichlorosilane self-assembled graphene,” Appl. Phys. Express, vol. 6, p. 127003, 2013.
|
53
|
S. Lee, S. Kim, D. B.
Janes, M. Meyyappan, S. Ju*, “Red-green-blue light sensitivity of oxide nanowire
transistors for transparent display applications,” AIP Adv., vol. 3, p. 12112,
2013.
|
52
|
W. Song, Y. Kim, S. Kim, S.
Kim, M.-J. Cha, I. Song, D. S. Jung, C. Jeon, T. Lim, S. Lee, S. Ju, W. C.
Choi, M. W. Jung, K.-S. An, “Homogeneous
and stable p-type doping of graphene by MeV electron beam-stimulated hybridization
with ZnO thin films,” Appl. Phys. Lett.,
vol. 102, p. 53103, 2013.
|
51
|
D. Kim, K. Seo, W. Choi, M.
Kim, UK. Kang, S. Ju, W. Choi, “Detection of
evanescent waves using disordered nanowires,” Opt. Commun.,
vol. 297, p. 1-6, 2013.
|
50
|
K. Seo, M. Suh, S. Ju*,
“Control of oxygen vacancy concentration in ZnO
nanowires containing sulfur as reducing agent,” Electron. Mater. Lett., vol.
9(3), p. 273-277, 2013.
|
49
|
J. Bong, J. Han, J. Lee, S.
Kim, S. Ju*, “Fabrication
of highly transparent nanowire transistors with one-step-processed graphene
gate-source-drain electrodes,” Appl.
Phys. Express, vol. 6(5), p. 55103,
2013.
|
48
|
S. Kim, H. Kim, D. B.
Janes, S. Ju*, “Interface
studies of N2 plasma-treated ZnSnO nanowire transistors using
low-frequency noise measurements,” Nanotechnology,
vol. 24(30), p. 305201, 2013.
|
47
|
T. Lim, D. Kim, S. Ju*,
“Direct deposition of aluminum oxide gate
dielectric on graphene channel using nitrogen plasma treatment,” Appl. Phys. Lett., vol. 103(1), p. 013107, 2013.
|
2012 |
46
|
T. Lim, H. Kim, M.
Meyyappan, S. Ju*, “Photostable
Zn2SnO4 nanowire transistors for transparent displays,” ACS Nano, vol. 6, p. 4912-4920, 2012.
|
45
|
S. Kim, P. D. Carpenter, R.
K. Jean, H. Chen, C. Zhou, S. Ju*, D. B. Janes, “Role of Self-Assembled Monolayer Passivation in Electrical
Transport Properties and Flicker Noise of NWTs,” ACS Nano, vol. 6, P.
7352-7361, 2012.
|
44
|
S. Kim, D. B. Janes, S.-Y.
Choi, S. Ju*, “Nanoscale
contacts between semiconducting nanowires and metallic graphenes,” Appl. Phys. Lett., vol. 101, p. 063122, 2012.
|
43
|
H. Kim, J.-H. Park, M. Suh,
J. R. Ahn, S. Ju*, “Horizontally
aligned ZnO nanowire transistors using patterned graphene thin films,” Appl. Phys. Lett., vol. 100, p. 63112, 2012.
|
42
|
S.-J. Ahn, J.-S. Kang,
H.-J. In, S. Ju*, O.-K. Kwon, “A low output noise multi-stage shift register using tin
dioxide nanowire transistors,” IEEE
Elec. Dev. Lett., vol. 33, P.
1411-1413, 2012.
|
41
|
T. Lim, S. Y. Ryu, S. Ju*,
“Direct growth of SnO2 nanowires on WOx
thin films,” Nanotechnology, vol. 23, p. 485702, 2012.
|
40
|
K. Seo, S. Kim, D. B.
Janes, M. W. Jung, K.-S. An, S. Ju*, “Effect of nitrogen plasma on surface of indium oxide
nanowires,” Nanotechnology, vol. 23, p. 435201, 2012.
|
39
|
M. Suh, M Meyyappan, S. Ju*,
“The effect of Ga content on In2xGa2-2xO3
nanowire transistor characteristics,” Nanotechnology, vol. 23, p. 305203, 2012.
|
38
|
S. Kim, S. Ju*, “Threshold voltage control for SnO2 nanowire
transistors by gas treatment,” JKPS,
vol. 8, p. 1287-1291, 2012.
|
37
|
T. Lim, S. Lee, M
Meyyappan, S. Ju*, “Tin oxide
and indium oxide nanowire transport characteristics: Influence of oxygen
concentration during synthesis,” Semicond.
Sci. Tech., vol. 27, p. 35018,
2012.
|
36
|
H. Kim, B. K. Lee, K.-S.
An, S. Ju*, “Direct
growth of oxide nanowires on CuOx thin film,” Nanotechnology, vol. 23, p.
45604, 2012.
|
35
|
H. Kim, P.-S. Kwag, S. Lee,
O.-K. Kwon, S. Ju*, “Metallic, linear, and saturated output
characteristics of oxide nanowire transistors,” IEEE T. Nanotech., vol. 11,
p. 386-389, 2012.
|
2011 |
34
|
C. Lee, S. Park, P.
Srisungsitthisunti, S. Kim, C. Zhou, D.B. Janes, X. Xu, K. Roy, S. Ju, M. Qi,
“Control of current saturation and threshold voltage shift in indium oxide
nanowires with femtosecond laser annealing,” ACS Nano, vol. 5, p.
1095-1101, 2011.
|
33
|
T. Lim, S. Lee, M.
Meyyappan, S. Ju*, “Control of semiconducting and metallic indium
oxide nanowires,” ACS Nano, vol. 5, p. 3917-3922, 2011.
|
32
|
H. Kim, H. Choi, S.-Y.
Choi, S. Ju*, “Aligned circular-type nanowire transistors grown on
multilayer graphene film,” J. Phys.
Chem. C, vol. 115, p. 22163-22167,
2011.
|
31
|
S. Kim, S. Kim, P.
Srisungsitthisunti, C. Lee, M. Qi, X. Xu, C. Zhou, S. Ju, D. B. Janes,
“Selective contact anneal effects on indium oxide nanowire transistors using
femtosecond laser,” J. Phys. Chem. C,
vol. 115, p. 17147-17153, 2011.
|
30
|
H. Kim, P.-S. Kwag, S. Lee,
O.-K. Kwon, S. Ju*, “Nanowire transistor behavior under AC drives,” IEEE Trans. Nanotechnol., vol. 10(6), p. 1449-1453, 2011.
|
29
|
S. Y. Lee, Y. H. Shin, Y. Kim,
S. Ju*, “Emission characteristics of diameter controlled SnO2
nanowires,” J. Lumin., vol. 131, p. 2565-2568, 2011.
|
28
|
T. Lim, S.-J. Ahn, M. Suh,
O.-K. Kwon, M. Meyyappan, S. Ju*, “A nanowire-based shift register
for display scan drivers,” Nanotechnology,
vol. 22, p. 405203, 2011.
|
27
|
S. Kim, M. Suh, S. Ju*,
“Fabrication of reliable semiconductor nanowires by controlling crystalline
structure,” Nanotechnology, vol. 22, p. 305704, 2011.
|
26
|
S. Y. Lee, Y. H. Shin, Y. Kim, S. Kim,
S. Ju*, “Thermal quenching behavior of emission bands in Eu-doped
ZnS nanowires,” J. Lumin., vol. 131, p. 1336-1339, 2011.
|
25
|
T. Lim, S. Lee, M. Suh, S.
Ju*, “Surface modification of oxide nanowires by nitrogen plasma,” Electrochem. Solid State Lett., vol. 14, p. H218-H221, 2011.
|
24
|
T. Lim, S. Kim, S. Ju*,
“Controlled growth of related defects on oxide nanowires,” Journal of Nanoscience and Nanotechnology,
vol. 11, p. 7022-7026, 2011.
|
23
|
M. Jung, S. Kim, S. Ju*,
“Enhancement of green emission from Sn-doped ZnO nanowires,” Opt. Mater., vol. 33, p. 280–283, 2011.
|
22
|
J.-W. Park, H.-K. Biak, T.
Lim, S. Ju*, “Response to
"Comment on Threshold voltage control of oxide nanowire transistors using
nitrogen plasma treatment,” Appl. Phys.
Lett., vol. 98, p. 176102, 2011.
|
2010 |
21
|
S.
Kim, S. Kim, J. Park, S. Ju, S. Mohammadi, “Fully transparent pixel circuits
driven by random network carbon nanotube transistor circuitry,” ACS Nano, vol. 4(6), p. 2994–2998, 2010.
|
20
|
J.-W. Park, H.-K. Baik, T. Lim, S. Ju*,
“Threshold voltage control of oxide nanowire transistors using nitrogen plasma
treatment,” Appl. Phys. Lett., vol. 97, p. 203508, 2010.
|
19
|
S. Kim, H. Choi, M. Jung, S.-Y. Choi,
S. Ju*, “Hybrid nanowire–multilayer graphene film light-emitting
sources,” Nanotechnology, vol. 21, p. 425203, 2010.
|
18
|
S. Kim, T. Lim, M. Jung, K.-J. Kong,
K.-S. An, S. Ju*, “Bright blue emission from Te-doped ZnS
nanowires,” J. Lumin., vol. 130, p. 2153–2156, 2010.
|
17
|
K. Seo, T. Lim, S. Kim, H.-L. Park, S.
Ju*, “Tunable-white-light-emitting nanowire sources,” Nanotechnology, vol. 21, p. 255201, 2010.
|
16
|
S. Kim, C. Delker, P. Chen, C. Zhou, S.
Ju, D. B. Janes, “Oxygen plasma exposure effects on indium oxide nanowire
transistors,” Nanotechnology, vol. 21, p. 145207, 2010.
|
2009 |
15
|
S. Kim, S. Ju, J. H. Back, Y. Xuan, P. D. Ye, M. Shim, D. B. Janes, S. Mohammadi, “Fully transparent thin-film transistors based on aligned carbon nanotube arrays and indium tin oxide electrodes,” Adv. Mater., vol. 21, p. 564-468, 2009.
|
2008 |
14
|
X. Sun, B. Yu, G. Ng, M. Meyyappan, S.
Ju, D. B. Janes, “Germanium antimonide phase-chase nanowires for memory
applications,” IEEE Trans. Electron
Devices, vol. 55, p. 3131-3135,
2008.
|
13
|
S. Ju, J. Li, J. Liu, P.-C. Chen, Y.-G.
Ha, F. Ishikawa, H. Chang, C. Zhou, A. Facchetti, D. B. Janes, T. J. Marks, “Transparent active matrix organic light-emitting diode
displays driven by nanowire transistor circuitry,” Nano Lett., Coverpage, vol.
8, p. 997-1004, 2008.
|
12
|
S. Ju, S. Kim, S. Mohammadi, D. B.
Janes, P. Chen, F. Ishikawa, H. Chang, C. Zhou, Y.-G. Ha, J. Liu, A. Facchetti,
T. J. Marks, “1/f noise of SnO2 nanowire transistors,” Appl. Phy. Lett., vol. 92, p. 243120, 2008.
|
11
|
S. Ju, D. B. Janes, F. Ishikawa, H.
Chang, H. Chang, C. Zhou, Y.-G. Ha, J. Liu, A. Facchetti, T. J. Marks
“High-performance In2O3 nanowire transistors fabricated
with organic gate nanodielectrics,” Appl.
Phy. Lett., vol. 92, p. 222105,
2008.
|
10
|
B. Yu, X. Sun, S. Ju, D. B. Janes, M.
Meyyappan, “Chalcogenide nanowire based phase change memory,” IEEE T. Nanotech., vol. 7, p. 496-502, 2008.
|
9
|
S. Ju, S. Kim, Y.-G. Ha, A. Facchetti,
S. Mohammadi, T. J. Marks, and D. B. Janes, “Interface studies of ZnO nanowire transistors
using low-frequency noise and temperature-dependent I-V measurements,” Appl. Phy. Lett., vol. 92, p. 022104, 2008.
|
2007 |
8
|
B. Yu, S. Ju, X. Sun, G. Ng, T. D.
Nguyen, M. Meyyappan, D. B. Janes, “Indium selenide nanowire phase-change
memory,” Appl. Phy. Lett., vol. 89, p. 073510, 2007.
|
7
|
S. Ju, A. Facchetti, Y. Xuan, J. Liu,
F. Ishikawa, P. Ye, C. Zhou, T. J. Marks, D. B. Janes, “Fabrication of fully
transparent nanowire transistors for transparent and flexible electronics,” Nature Nanotechnology, vol. 2, p. 378-384, 2007.

|
6
|
S. Ju, J. Li, N. Pimparkar, M. Alam, R.
P. H. Chang, D. B. Janes, “N-type field-effect transistors using multiple
Mg-doped ZnO nanorods,” IEEE T.
Nanotech., vol. 6, p. 390-395,
2007.
|
5
|
S. Ju, K. Lee, D. B. Janes, M. -H.
Yoon, A. Facchetti, T. J. Marks, “High-performance ZnO nanowire field-effect
transistors with organic nanodielectrics: Effects of metal contacts and ozone
treatment,” Nanotechnology, vol. 18, p. 155201, 2007.
|
4
|
S. Ju, A. K. Mills, Q. Hang, D. S.
Elliott, D. B. Janes, “Negative resist behavior of neutral sodium atoms
deposited on self-assembled monolayers,” JVST
B, vol. 25, p. L5-L9, 2007.
|
2006 |
3
|
S. Ju, D. B. Janes, G. Lu, A.
Facchetti, T. J. Marks, “Effects of bias stress on ZnO nanowire field-effect
transistors fabricated with organic gate nanodielectrics,” Appl. Phy. Lett., vol. 89, p.
193506-1-3, 2006. Also published online in Virtual Journal of Nanoscale
Science & Technology, vol. 14,
2006.
|
2
|
S. Ju, K. Lee, D. B. Janes, C. D.
Ramesh, B. Habibah, R. Wilkins, M. -H. Yoon, A. Facchetti, T. J. Marks, “Proton
radiation hardness of single nanowire transistors using robust organic gate
nanodielectrics,” Appl. Phy. Lett., vol. 89, p. 073510-1-3, 2006.
|
2005 |
1
|
S. Ju, K. Lee, D. B. Janes, M. -H.
Yoon, A. Facchetti, T. J. Marks, “Low operating voltage single ZnO nanowire
field-effect transistors enabled by self-assembled organic gate
nanodielectrics,” Nano Lett., vol. 5, p. 2181-2186, 2005.
|
|