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2023

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109. J.-H. Oh, Y.-H. Lee, M.-S. Kim, S.-H. Hong, T.-H. Kim and S. Choi,

"Evaluation of thermal plasma-synthesized cobalt boride nanoparticles as efficient water-splitting catalysts", 

Journal of Environmental Chemical Engineering, 11, e109578. (April)

 
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108. Y.-H. Lee, T.-H. Kim, K.-H. Kim, and S. Choi,

"Two-dimensional computational fluid dynamics modeling of slip-flow heat transfer in the hot filament chemical vapor

deposition process", 

Surface & Coatings Technology, 456, e129291 (April. 25)

 
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10. D.-E. Choi, Y.-H. Lee, K.-H. Kim and S. Choi,

"3-D  Numerical  Simulation  and  Optical Diagnosis  of  Temperature  Distribution  Inside  a Chamber  of  Hot  Filament Chemical  Vapor Deposition", 

Applied Science and Convergence Technology, 32(1), 7-11. (Jan. 30)

 

2022

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106. M.-S. Kim, J.-H. Oh, S.-H. Hong, Y.-H. Lee, T.-H. Kim and S. Choi,

"Synthesis of boron nitride nanotubes in thermal plasma with continuous injection of boron under atmospheric pressure", 

Journal of Materials Research, 37, 4419–4427. (July. 18)

 
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105. H.-Y. Ko, J.-H. Oh, S.-B. Yang and S. Choi,

"Thermal Plasma Synthesis of Metal-Boride Nanoparticles as a Functional Material for Gamma-Ray Shielding", 

Applied Science and Convergence Technology, 31(1), 15-18. (Jan. 30)

 
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104. J.-H. Oh, M. Kim, S.-H. Hong, Y.-H. Lee, T.-H. Kim and S. Choi,

"Facile synthesis of cubic boron nitride nanoparticles from amorphous boron by triple thermal plasma jets at atmospheric pressure", 

Advanced Powder Technology, 33, e103400 (Feb. 02)

 
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103. J.-H. Oh, T.-H. Kim, and S. Choi,

"Synthesis of metal boride nanoparticles by using thermal plasmas", 

Journal of the Korean Physical Society, 80, 808–816. (Jan. 10)

 

2021

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102. H.-J. Kang, J.-H. Oh, D.-E Choi, Hidemasa Takana, and S. Choi,

"Numerical Analysis of Thermal Flow Characteristics Inside Waste Combustion Chamber with Multiple Thermal Plasma Jets", 

International Journal of Environmental Science and Technology, 30(6), 172-175. (Nov. 29)

 
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101. J.-H. Oh, D.-H. Gwon, T.-H. Kim, J.-Y. Sun, and S. Choi,

"Synthesis of titanium boride nanoparticles and fabrication of flexible material for radiation shielding", 

International Journal of Environmental Science and Technology, 31, 151-157. (Aug. 15)

 
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100. H.-Y. Ko, D.-H. Shin, J.-H. Oh, H.-J. Kang, D.-E Choi, and S. Choi,

"Numerical Simulation of Thermal Flow Characteristics in Plasma Reactor for Rotten Citrus Fruits Drying", 

International Journal of Environmental Science and Technology, 30(3), 70-73. (May. 29)

 
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99. J.-H. Oh, Y.-H. Lee, T.-H. Kim, and S. Choi,

"Numerical simulation and diagnostic of thermal flow characteristic inside triple DC thermal plasma jet system", 

International Journal of Environmental Science and Technology, 15, e01002. (Feb. 15)

 

2020

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98. J. Park, M. Kim, S. Choi, and J.-Y. Sun,
"Self-healable soft shield for γ-ray radiation based on polyacrylamide hydrogel composites" 
Scientific Reports10, 1-8. (Dec. 10)

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97. J.-H. Oh, M. Kim, Y.-H. Lee, S.-H. Hong, S.-S. Park, T.-H. Kim, and S. Choi,

"Synthesis of cobalt boride nanoparticles and h-BN nanocage encapsulation by thermal plasma", 

Ceramics International, 46, 28792-28799. (Dec. 15)

 

96. T.-H. Kim, J.-H. Oh, M. Kim, S.-H. Hong, and S. Choi,

"Thermal Plasma Synthesis of Ceramic Nanomaterials" 

Applied Science and Convergence Technology, 29, 117-123. (Sep. 30)

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95. M. Kim, Y. H. Lee, J.-H. Oh, S.-H. Hong, B.-I. Min, T.-H. Kim, and S. Choi,

“Synthesis of boron nitride nanotubes using triple DC thermal plasma reactor with hydrogen injection”,

Chemical Engineering Journal., 395, 125148. (Sep. 01)

2019

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94. S. Y. Hyeon, D. E. Choi, J. Ko, and S. Choi,

“Technology of Compact Fusion Reactor”,

Applied Science of Nuclear Energy33, 21–25 (Dec. 30)

93. Y. J. Kang, Y. S. Choi, M. Kim, and S. Choi,

“R&D Trends of Small Modular Reator”,

Applied Science of Nuclear Energy, 33, 26–31 (Dec. 30)

92. Y. H. Lee, C. W. Song, T.-H. Kim, K. H. Kim, and S. Choi,

“Numerical simulation of 3-Dimensional temperature distribution in a hot filament chemical vapor deposition chamber”,

Science of Advance Materials, 11(11), 1587–1593. (Nov. 01)

91. M. Kim, J.-H. Oh, T.-H. Kim, Y. H. Lee, S.-H. Hong, and S. Choi,

“Synthesis of Metal Boride Nanoparticles Using Triple DC Thermal Plasma Jet System”,

Journal of Nanoscience and Nanotechnology., 19(10), 6264–6270. (Oct. 01)

90. J.-H. Oh, M. Kim, Y. H. Lee, S.-H. Hong, T.-H. Kim, and S. Choi,

“Synthesis of Tungsten Carbide Nanomaterials in Triple DC Thermal Plasma Jet System”,

Journal of Nanoscience and Nanotechnology., 19(10), 6277–6284. (Oct. 01)

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89. J. Ko, T.-H. Kim, and S. Choi,

“Numerical Simulation of Cement Kiln Combined with Thermal Plasma for SF6 Pyrolysis”,

Applied Science and Convergence Technology, 28(4), 93-100. (Jul. 15)

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88. S.-H. Hong, T.-H. Kim, and S. Choi,

“Hydrophilic Surface Modification of Polytetrafluoroethylene Film with Gliding Arc Plasma”,

Applied Science and Convergence Technology, 28(4), 101-106. (Jul. 15)

87. T.-H. Kim, Y. H. Lee, M. Kim, J.-H. Oh, S. Choi,

“Thermal Flow Characteristics of the Triple Plasma Torch System for Nanoparticle Synthesis”,

IEEE Transactions on Plasma Science, 47(7), 3366-3373. (Jun. 14)

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86B.-I. Min, D. K. Dinh, D.-H. Lee, T.-H. Kim, and S. Choi,

“Numerical modelling of a low power nontransferred arc plasma reactor for methane conversion”,

Plasma Science & Technology21(6), 064005. (Jun. 01)

85. J. Ko, T.-H. Kim, and S. Choi,

“Numerical analysis of thermal plasma scrubber for CF4 decomposition”,

Plasma Science & Technology, 21(6), 064002 (Jun. 01)

84B. I. Min, T.-H. Kim, and S. Choi,
“Estimate of the Cathodic Arc Spot Size in a Nontransferred Arc Plasma Torch by Comparing the Results of a
Numerical Analysis with the Experimental Results”,
Journal of the Korean Physical Society74(8), 785–790 (Apr. 30)

2018

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83. J. Ko, T.-H. Kim, and S. Choi,

“Numerical Simulation of the Multiple Thermal Plasma Reactor for CHF3 Pyrolysis”,

Applied Science of Nuclear Energy32, 17–22 (Dec. 31)

82. B.-I. Min, J. Ko, T.-H. Kim, and S. Choi,

“Effects of Operating Condition on the 2-dimensional Temperature and Velocity Distributions of a Thermal Plasma Jet in a Segmented Arc Heater”, Journal of the Korean Physical Society 73(5), 592–598 (Sep. 01)

81. C. W. Song, Y. H. Lee, S. Choi, N.-M. Hwang, and K. H. Kim,

“Temperature Simulation and Diamond Deposition Behavior with Distance Between Filament and Susceptor During Hot-Filament Chemical Vapor Deposition”, Nanoscience and Nanotechnology Letters, 10(5/6), 761–766 (May. 01) 

80. S. H. Gwon, J.-H. Oh, M. Kim, S. Choi, K. H. Oh, and J.-Y. Sun,

“Sewable soft shields for the γ-ray radiation”,

Scientific Reports, 8, 1582-1–7 (Jan. 30)

2017

79. C. W. Song, Y. H. Lee, S. Y. Heo, N.-M. Hwang , S. Choi, and K. H. Kim,

“Computer Simulation of Temperature Parameter for Diamond Formation by Using Hot-Filament Chemical Vapor Deposition”,

Coatings, 8(1), 15-1–10 (Dec. 29)

78. F. Liang, M. Tanaka, S. Choi, and T. Watanabe,

“Formation of different arc-anode attachment modes and their effect on temperature fluctuation for carbon nanomaterial production in DC arc discharge”, Carbon117, 100–111 (Jun. 01)

77. M. W. Ahmed, S. Choi, K. Lyakhov, U. Shaislamov, R. K. Mongre, D. K. Jeong, R. Suresh, and H. J. Lee,

“High-Frequency Underwater Plasma Discharge Application in Antibacterial Activity”,

Plasma Physics Reports43(3), 381–392 (Mar. 31)

2016

76. J.-H. Oh, Y.-B. Mun, J.-H. Lee, H.-K. Choi, and S. Choi,

“Aggregate Effects on γ-ray Shielding Characteristic and Compressive Strength of Concrete”,

Journal of Nuclear Fuel Cycle and Waste Technology, 14(4), 357–365 (Dec. 31)

75. M. S. Rahman, U. S., J.-K. Yang, J.-K. Kim, Y. H. Yu, S. Choi, and H.-J. Lee,

“Effects of electron beam irradiation on tribological and physico-chemical properties of Polyoxymethylene copolymer”,

Nuclear Instruments and Methods in Physics Research B, 387, 54–62 (Nov. 15)

74. S. Choi, H. Lee, and D.-W. Park,

“Synthesis of Silicon Nanoparticles and Nanowires by a Nontransferred Arc Plasma System”,

Journal of Nanomaterials, 2016, 5849041:1–9 (Oct. 25)

73. J. H. Park, H.-W. Park, S. Choi, and D.-W. Park,

“Effects of Blend Ratio Between High Density Polyethylene and Biomass on Co-Gasification Behavior in a Two-Stage Gasification System”, International Journal of Hydrogen Energy, 41, 16183–16822 (Oct. 15)

72. U. Shaislamov, K. Krishnamoorthy, S. J. Kim, S. Choi, W. Chun, and H.-J. Lee, “Growth of CuO/ZnO Nanobranched Photoelectrode with Enhanced Stability for Solar Hydrogen Generation”,

Journal of Nanoscience and Nanotechnology16(10), 10541–10547 (Oct. 01)

71. M. W. Ahmed, J.-K. Yang, S. Choi, and H. J. Lee,

“Diagnostics of Argon Injected Hydrogen Peroxide Added High Frequency Underwater Capillary Discharge”,

Mechanics, Materials Science & Engineering, 6(6), 3:1–13 (Sep. 01)

70. M. W. Ahmed, R. Suresh, J.-K. Yang, S. Choi, and H. J. Lee,

“Effect of Water Conductivity on the Generation of OH˙ Radicals in High Frequency Underwater Capillary Discharge”,

International Journal of Renewable Energy and Environmental Engineering, 4(3), 28–34 (Apr. 01)

69. T.-H. Kim, S. Choi, and D.-W. Park,

“Thermal Plasma Synthesis of Crystalline Gallium Nitride Nanopowder from Gallium Nitrate Hydrate and Melamine”,

Nanomaterials6, 38:1–15 (Feb. 24)

68. F. Liang, M. Tanaka, S. Choi, and T. Watanabe,

“Investigation of the relationship between arc-anode attachment mode and anode temperature for nickel nanoparticle production by a DC arc discharge”, Journal of Physics D: Applied Physics, 49, 125201:1-16 (Feb. 23)

67. U. Shaislamov, K. Krishnamoorthy, S. J. Kim, A. Abidov, B. Allabergenov, S. Kim, S. Choi, R. Suresh, W. M. Ahmed, and H.-J. Lee, “Highly stable hierarchical p-CuO/ZnO nanorod/nanobranch photoelectrode for efficient solar energy conversion”,

International Journal of Hydrogen Energy41, 2253–2262 (Jan. 30)

2015

66. E. H. Ko, T.-H. Kim, S. Choi, and D.-W. Park,

“Synthesis of Cubic Boron Nitride Nanoparticles from Boron Oxide, Melamine and NH3 by Non-Transferred Ar-N2 Thermal Plasma”, Journal of Nanoscience and Nanotechnology, 15(11), 8515–8520 (Nov. 01)

65. S. Choi,

“Numerical Simulation of Thermal Plasma Gasification Process”,

Applied Mechanics and Materials, 799–800, 90–94 (Oct. 01)

64. D. Lee, Y.-W. Choi, Y.-S. Na, S. Choi, D.-W. Park, and J. Choi,

“Fe2O3 nanopowders prepared by a thermal plasma process for water oxidation”,

Materials Research Bulletin, 68, 221–226 (Aug. 01)

63. Y.-S. Na, H. Yoo, T.-H. Kim, J. Choi, W. I. Lee, S. Choi, and D.-W. Park,

“Electrochemical performance of Si-multiwall carbon nanotube”,

Thin Solid Films, 587, 14–19 (Jul. 31)

62. T.-H. Kim, D.-W. Park, and S. Choi,

“Synthesis of Gallium-oxide Nanoparticles and Nanowires by Using a Thermal Plasma”,

Journal of The Korean Physical Society, 66(8), 1233–1238 (Apr. 30).

61. H.-W. Park, S. Choi, and D.-W. Park,

“Simultaneous treatment of NO and SO2 with aqueous NaClO2 solution in a wet scrubber combined with a plasma electrostatic precipitator”, Journal of Hazardous Materials, 285, 117–126 (Mar. 21)

60. I. J. Cho, H.-W. Park, D.-W. Park, and S. Choi,

“Enhancement of synthesis gas production using gasification-plasma hybrid system”,

International Journal of Hydrogen Energy, 40, 1709–1716 (Jan. 30)

2014

59. Y.-S. Na, S. Choi, and D.-W. Park,

“Carbon Nanotube Surface Modification with the Attachment of Si Nanoparticles in Thermal Plasma Jet”,

Physica status solidi (a) – applied research211(12), 2749–2755 (Dec. 09)

58. Y. Liu, M. Tanaka, and S. Choi, and T. Watanabe,

“Investigation of In-Flight Glass Melting by Controlling the High-Temperature Region of Multiphase AC Arc Plasma”,

 International Journal of Applied Glass Science, 5(4), 443–451 (Dec. 04)

57. F. Liang, M. Tanaka, S. Choi, and T. Watanabe,

“Measurement of anode surface temperature in carbon nanomaterial production by arc discharge method”,

Materials Research Bulletin, 60, 158–165 (Dec. 01)

56. H.-W. Park, I. J. Cho, S. Choi, and D.-W. Park,

“Flexible Dielectric-Barrier Discharge Reactor with Water and Teflon Dielectric Layers”,

IEEE Transactions on Plasma Science, 42(10), 2364–2365 (Oct. 01)

55. F. Liang, M. Tanaka, S. Choi, and T. Watanabe,

“Effect of arc behaviour on the temperature fluctuation of carbon electrode in DC arc discharge”,

Journal of Physics: Conference Series518, 012027 (Jun. 03)

54. S. Choi and D.-W. Park,

“Development of a Thermal Plasma Pyrolysis System for PFC Gas Treatment on a Large Scale”,

Journal of Environmental & Thermal engineering, 11(1), 65–73 (Jun. 01)

53. H.-W. Park, C. H. Lee, S. Choi, and D.-W. Park,

“Continuous Treatment of Hydrogen Sulfide on a Large Scale Using Wet-Electrostatic Precipitator”,

Chemical Engineering Journal, 243, 448–454 (May. 01)

52. C. H. Lee, H.-W. Park, S. Choi, and D.-W. Park,

“Removal of Dilute NH3 Gas from Air Stream by Wet-Electrostatic Precipitator System at Atmospheric Pressure”,

Journal of Chemical Engineering of Japan, 47(4), 329–333 (Apr. 20)

51. H. G. Lee, H.-W. Park, S. Choi, H.-S. Park, and D.-W. Park,

“Production of Synthesis Gas from Coal by DC Non-Transferred Steam Plasma Gasification System”,

Journal of Chemical Engineering of Japan47(4), 334–339 (Apr. 20)

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50. C. H. Lee, H.-W. Park, S. Choi, and D.-W. Park,

“Removal of Dilute NH3 Gas from Air Stream by Wet-Electrostatic Precipitator System at Atmospheric Pressure”,

Journal of Chemical Engineering of Japan, 0021-9592, 47(4), 329–333 (April 20, 2014).

49. F. Liang, M. Tanaka, S. Choi and T. Watanabe,

“Investigation of Carbon Nanomaterials Growth on Anode Surface by Arc Discharge Method”,

Journal of Chemical Engineering of Japan, 47(3), 296–300 (Mar. 20)

48. S. Choi, M.-S. Lee, and D.-W. Park,

“Photocatalytic Performance of TiO2/V2O5 Nanocomposite Powder Prepared by DC Arc Plasma”,

Current Applied Physics, 14(3), 433–438 (Mar. 01)

47. K.-S. So, H. Lee, T.-H. Kim, S. Choi, and D.-W. Park,

“Synthesis of silicon nanopowder from silane gas by RF thermal plasma”,

Physica status solidi (a) – applied research, 211(2), 310–315 (Feb. 14)

46. S. Choi, L. DS. L. Jr., Y. Cheng, and T. Watanabe,

“Synthesis of Cobalt Boride Nanoparticles using RF Thermal Plasma”,

Advanced Powder Technology, 25, 365–371 (Jan. 01)

45. T.-H. Kim, S. Choi, and D.-W. Park,

“Effects of NH3 Flow Rate on the Thermal Plasma Synthesis of AlN Nanoparticles”,

Journal of the Korean Physical Society, 63(10), 1864–1870 (Nov. 01)

2013

44. Y. Liu, M. Tanaka, T. Ikeba, S. Choi, and T. Watanabe,

“Fluctuation Measurement of Multi-Phase AC Arc and In-Flight Particle Temperature”,

Journal of Chemical Engineering of Japan, 46(10), 672–676 (Oct. 20)

43. J.-H. Ko, S. Choi, H.-W. Park, and D.-W. Park,

“Decomposition of Nitrogen Trifluoride using Low Power Arc Plasma”,

Plasma Science & Technology, 15(9), 923–927 (Sep. 01)

42. J.-H. Ko, S. Choi, H.-W. Park, and D.-W. Park,

“Decomposition of Nitrogen Trifluoride using Low Power Arc Plasma”,

Plasma Science & Technology, 15(9), 923–927 (Sep. 01)

41. S. Choi, J. Matsuo, Y. Cheng and T. Watanabe,

“Preparation of boron-rich aluminum boride nanoparticles by RF thermal plasma”,

Journal of Nanoparticle Research, 15(8), 1820 (Aug. 01)

40. M. Tanaka, T. Ikeba, Y. Liu, S. Choi, and T. Watanabe,

“High- Speed Visualization of Electrode Erosion in Multi-Phase Alternating Current Arc”,

Journal of Fluid Science and Technology, 8(2), 160–171 (Jul. 31)

39. S.-H. Hong, S.-J. Park, J.-M. Choe, Y.-M. Jeon, S. J. Yang, S.-T. Lim, S. Choi, Y.-G. Jin, C. R. Park, and G.-H. Kim,

“Deposition/erosion and H/D retention characteristics in gaps of PFCs in KSTAR studied by cavity technique”,

Journal of Nuclear Materials, 438, S698–S706 (Jul. 01)

38. S. Choi, J. Matsuo, and T. Watanabe,

“Synthesis of AlB12 and YB66 Nanoparticles by RF Thermal Plasmas”,

Journal of Physics: Conference Series, 441, 012030 (Jun. 13)

37. Y. Cheng, S. Choi, and T. Watanabe,

“Synthesis of Niobium Boride Nanoparticle by RF Thermal Plasma”,

Journal of Physics: Conference Series441, 012031 (Jun. 13)

36. M. Tanaka, T. Ikeba, Y. Liu, S. Choi, and T. Watanabe,

“Investigation of Electrode Erosion Mechanism of Multi-Phase AC Arc by High-Speed Video Camera”,

Journal of Physics: Conference Series, 441, 012015 (Jun. 13)

35. H.-W. Park, S. Choi, and D.-W. Park,

“Effect of Reaction Gases on PFCs Treatment Using Arc Plasma Process”,

Clean Technology, 19 (2), 113–120 (Jun. 01)

34. Y. Jin, S. Choi, S. J. Yang, C. R. Park, and G.-H. Kim,

“Effect of Helmholtz Oscillation on Auto-Shroud for APS Tungsten Carbide Coating”,

Journal of Thermal Spray Technology, 22(5), 756–763 (Jun. 01)

33. S. Choi, T.M. Li, T. Nakayama, K. Otsuki, and T. Watanabe,

“Numerical Analysis of Temperature Distribution in the Long DC Arc Thermal Plasma for Waste Treatment”,

Journal of Chemical Engineering of Japan, 46(3), 201–208 (Mar. 20)

32. W. Lee, S. Choi, S.-M. Oh, and D.-W. Park,

“Preparation of Spherical Hollow Alumina Particles by Thermal Plasma”,

Thin Solid Films, 529, 394–397 (Feb. 01)

31. J.-H. Seo, S. Choi, D.-U. Kim, and B.-G. Hong,

“Numerical Design Study on a High-powered Segmented-type Arc Plasma Torch for a High-enthalpy Supersonic Plasma Wind Tunnel”, Journal of the Korean Physical Society62(2), 250–257 (Jan. 01)

30. F. Liang, T. Shimizu, M. Tanaka, S. Choi, and T. Watanabe,

“Preparation of Polyhedral Graphite Particles by Arc Discharge under Atmospheric Pressure”,

Japanese Journal of Applied Physics, 52, 01AK01 (Jan. 01)

2012

29. S. Choi and T. Watanabe,

“Decomposition of Water-Insoluble Organic Waste by Water Plasma at Atmospheric pressure”,

Journal of Physics: Conference Series, 406, 012003 (Dec. 17)

28. Y. Liu, M. Tanaka, T. Ikeba, S. Choi, and T. Watanabe,

“In-Flight Particle Measurement of Glass Raw Materials in Hybrid Heating of Twelve-Phase AC Arc with Oxygen Burner”,

Journal of Physics: Conference Series, 406, 012022 (Dec. 17)

27. T.M. Li, S. Choi, and T. Watanabe,

“Discharge Characteristics of DC Arc Water Plasma for Environmental Applications”,

Plasma Science & Technology, 14(12), 1097–1101 (Dec. 01)

26. S. Choi, S. H. Hong, S. Kim, D.-W. Park, and T. Watanabe,

“Magnetically Driven Rotation of Thermal Plasma Jet for Non-Degradable CF4 Treatment”,

Thin Solid Films, 523, 55–62 (Nov. 15)

25. T.M. Li, S. Choi, T. Watanabe, T. Nakayama, and T. Tanaka,

“Discharge and Optical Characteristics of Long Arc Plasma of Direct Current Discharge”,

Thin Solid Films, 523, 72–75 (Nov. 15)

24. S. Choi and T. Watanabe,

“Decomposition of 1-Decanol Emulsion by Water Thermal Plasma Jet”,

IEEE Transactions on Plasma Science, 40(11), 2831–2836 (Nov. 06)

23. D.-W. Kim, T.-H. Kim, S. Choi, K.-S. Kim, and D.-W. Park,

“Preparation of Silica Coated Iron Oxide Nanoparticles using Non-Transferred Arc Plasma”,

Advanced Powder Technology, 23(6), 701–707 (Nov. 01)

22. F. Liang, T. Shimizu, M. Tanaka, S. Choi, and T. Watanabe,

“Selective Preparation of Polyhedral Graphite Particles and Multi-Wall Carbon Nanotubes by Transferred Arc under Atmospheric Pressure”, Diamond and Related Materials, 30, 70–76 (Nov. 01)

21. Y. Liu, M. Tanaka, S. Choi, and T. Watanabe,

“In-Flight Particle Measurement of Alkali-Free Glass Raw Materials in 12-Phase AC Arc Plasma”,

Journal of Thermal Spray Technology, 21(5), 863–872 (Sep. 01)

20. S. J. Yang, J.-M. Choe, Y.-G. Jin, S.-T. Lim, K. Lee, Y. S. Kim, S. Choi, S.-J. Park, Y. S. Hwang, G.-H. Kim, and C. R. Park, “Influence of H+ Ion Irradiation on the Surface and Microstructural Changes of a Nuclear Graphite”,

Fusion Engineering and Design, 87(4), 344–351 (May. 01)

19. S. Choi, S. H. Hong, H. S. Lee, and T. Watanabe,

“A Comparative Study of Air and Nitrogen Thermal Plasmas for PFCs Decomposition”,

Chemical Engineering Journal, 185–186, 193–200 (Mar. 15)

18. S. Choi, K.-S. Choi, D.-W. Park, and T. Watanabe,

“Numerical Investigation on Counter Flow Injection of Waste Gas into Thermal Plasma Jet”,

International Journal of Plasma Environmental Science and Technology, 6 (1), 68–73 (Mar. 01)

17. T.-H. Kim, S. Choi, and D.-W. Park,

“Numerical Simulation on the Influence of Water Spray in Thermal Plasma Treatment of CF4 Gas”,

Current Applied Physics, 12(2), 509–514 (Mar. 01)

16. Y. Cheng, M. Shigeta, S. Choi, and T. Watanabe,

“Formation Mechanism of Titanium Boride Nanoparticles by RF Induction Thermal Plasma”,

Chemical Engineering Journal, 183, 483–491(Feb. 15)

15. S. Choi, D.-W. Park, and T. Watanabe,

“Thermal Plasma Decomposition of Fluorinated Greenhouse Gases”,

Nuclear Engineering and Technology, 44(1), 21–32 (Feb. 01)

2011

14. M. S. Choi, D. U. Kim, S. Choi, B.-H. Chung, and S. J. Noh,

“Iron Reduction Process using Transferred Plasma”,

Current Applied Physics, 11(5), S82–S86 (Sep. 01)

13. S. Choi, K. Y. Cho, J. M. Woo, J. C. Lim, and J. K. Lee,

“Numerical Analysis on a Thermal Plasma Reactor for HFC-23 Treatment”,

Current Applied Physics, 11(5), S94–S98 (Sep. 01)

12. J.-H. Seo, S. Choi, S.-M. Choi, and B.-G. Hong,

“Analytical Analysis of Segmented Arc Plasma Torch for Plasma Wind Tunnel Facility”,

Journal of the Korean Society of Propulsion Engineers, 15(4), 85–93 (Aug. 30)

11. S. Choi, J. M. Park, W. T. Ju, and S. H. Hong,

“Effects of Constrictor Geometry, Arc Current, and Gas Flow Rate on Thermal Plasma Characteristics in a Segmented Arc Heater”, Journal of Thermal Science and Technology, 6(2), 210–218 (Jun. 02)

2010

10. S. W. Kim, S. Choi, G.-H. Kim, and S. H. Hong,

“Effects of Shroud Gas Injection on Material Properties of Tungsten Layers Coated by Plasma Spraying”,

Thin Solid Films518(22), 6369–6372 (Sep. 01)

2009

9. S. Choi, H. S. Lee, S. W. Kim, D.-W. Park, and S. H. Hong,

“Thermal Plasma Analysis for the Pyrolysis of PFCs on a Large Scale”,

Journal of the Korean Physical Society, 55(5), 1819–1824 (Nov.)

8. H. S. Lee, S. Choi, S. W. Kim, and S. H. Hong,

“Crystallization of Amorphous Silicon Thin Film by using a Thermal Plasma Jet”,

Thin Solid Films, 517(14), 4070–4073 (May. 29)

2008

7. K. S. Kim, J. M. Park, S. Choi, J. Kim, and S. H. Hong,

“Enthalpy Probe Measurements and Three-Dimensional Modeling on Air Plasma Jets Generated by a Non-Transferred Plasma Torch with Hollow Electrodes”,  Journal of Physics D: Applied Physics, 41(6), 065201 (Feb. 22)

6. K. S. Kim, J. M. Park, S. Choi, J. Kim, and S. H. Hong,

“Comparative Study of Two- and Three-Dimensional Modeling on Arc Discharge Phenomena inside a Thermal Plasma Torch with Hollow Electrodes”, Physics of Plasmas, 15(2), 023501 (Feb. 12)

2006

5. C. M. Lee, S. I. Choi, S. Choi, and S. H. Hong,

“Synthesis of Boron Nitride Nanotubes by Arc-Jet Plasma”,

Current Applied Physics, 6(2), 166–170 (Feb.)

4. S. I. Choi, J. S. Nam, C. M. Lee, S. Choi, J. I. Kim, J. M. Park, and S. H. Hong,

“High Purity Synthesis of Carbon Nanotubes by Methane Decomposition using an Arc-Jet Plasma”,

Current Applied Physics, 6(2), 224–229 (Feb.)

2005

3. C. M. Lee, M. Hur, J. M. Park, S. Choi, and S. H. Hong,

“Development of Transferred Plasma Torch for Vitrification Process of Hazardous Waste”,

Journal of Environment and Thermal Engineering, 2(2), 95–103 (Jun.)

2004

2_(2004 04 SCI) IEEE-TPS32-2_Nozzle Geom

2. S. Choi, T. H. Hwang, J. H. Seo, D. U. Kim, and S. H. Hong,

“Effects of Anode Nozzle Geometry on Ambient Air Entrainment into Thermal Plasma Jets Generated by a Nontransferred Plasma Torch”, IEEE Transactions Plasma Science, 32(2), 473–478 (Jun. 28)

2003

1_(2003 02 SCI) JKPS42-93CH3 H radicals.

1. K. S. Kim, T. H. Hwang, S. Choi, S. H. Hong, and H. Shin,

“Numerical Computation on the Generation of CH3 and H Radicals by Thermal Plasma Decomposition of Hydrocarbons”,

Journal of the Korean Physical Society, 42(93), S893–S899 (Feb.)

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