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2019
112
S.-M. Jeong, T. Lim, J. Park. C.-Y. Han, H. Yang, and S. Ju*​, “Pen drawing display,” Nature Communications, 10, Article number: 4334, 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. 38, 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. Expressvol 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 Chemistryvol 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
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.
100
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.  
99
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.      
98
Y. Kang, and S. Ju*​, “Graphene-filter-mounted tin-oxide-nanowire-transistor for chemical sensor,” Semiconductor Science and Technology, vol. 33, p. 125013, 2018. 
97
S.-M. Jeong, Y. Kang, T. Lim, and S. Ju*​, “Hydrophobic microfiber strain sensor operating stably in sweat and water environment,” Adv. Mater. Interf., vol 5, p. 1801376, 2018. 

  

[Inside cover image]

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,” Nanotechnologyvol. 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 Nanovol. 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,” Nanotechnologyvol. 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,” Nanotechnologyvol. 23, p. 435201, 2012.

39

M. Suh, M Meyyappan, S. Ju*, The effect of Ga content on In2xGa2-2xO3 nanowire transistor characteristics,” Nanotechnologyvol. 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. 
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