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- Kang, S.; Ham, S.; Kim, K.-J. "An analytical, numerical, and experimental study of Rayleigh wave scattering for internal vertical crack evaluation." Construction and Building Materials, Volume 306, 124838, 2021
- Ham, S.; Kang, S.; Kim, K.-J. "A Numerical Study for Performance Prediction of a Metal Hydride Thermal Energy Conversion System Elaborating the Superadiabatic Condition." Energies 2020, 13, 3095.
- S. Adamenko, A. Esaulov, B. Ulmen, V. Novikov, S. Ponomarev, A. Adamenko, V. Artyuh, A. Gurin, V. Prokopenko, V. Kolomiyets, V. Belous, K.-J. Kim, G. Miley, A. Bassuney, D. Novikov, "Exploring new frontiers in the pulsed power laboratory: Recent progress," Results in Physics 5, 62–68, 2015
- N.Luo, G.Miley, K.J.Kim, R.Burton., X.Huang, “NaBH4/H2O2 fuel cells for air independent power systems.” Journal of Power Sources, Volume 185, Pages 685–690, 2008, USA
- C.H.Kim, K.J.Kim, M.Y.Ha, “Investigation of the characteristics of a stacked direct borohydride fuel cell for portable applications.” Journal of Power Sources, Volume 180, Pages 114-121, 2008, USA
- C.H.Kim, K.J.Kim, M.Y.Ha, “Performance enhancement of a direct borohydride fuel cell in practical running conditions.” Journal of Power Sources, Volume 180, Pages 154-161, 2008, USA
- K.J.Kim, J.O.Chae, “A Numerical Study on a Prediction of Performance of the Metal Hydride Thermal Conversion System through the Propagation Phenomena of Super-adiabatic Thermal Waves.” Journal of Korean society of mechanical engineers, Vol. 25, No.4, pp.572~582, Seoul, Korea, 2001.
- G.A.Fateyev, M.A.Silenkov, K.J.Kim, “Experimental study of Propagation of Waves of Energy Conversion in Blown- Through Porous Media.” Journal of Engineering Physics and Thermophysics, Vol.73, No.5, pp1093~1108, Minsk, Belarus, 2000
- K.J.Kim, “Propagation of Waves of Metal-Hydride Thermal Conversion in Blown-Through Porous Media.” Journal of Engineering Physics and Thermophysics, Vol.71, No.1, pp51~61, Minsk, Belarua, 1998
- K.J.Kim, J.O.Chae, “A performance simulation of spark ignition Wankel type rotary engine.” Journal of Korean society of automobile engineers, Vol. 1, KSAE No.933738, pp80~89, Seoul, Korea, 1993
- Conference and Proceedings:
- Miley, G. H., S. N. Srivastava, K. Kim, G. Chen, “Low Temperature Plasma Surface Treatment of Catalytic Material,” TechConnect World Innovation Conference & Expo, Accelerating the Commercialization of Global Innovation, Washington, D.C., June 14 – 17, 2015
- G. H. Miley, K. J. Kim, E. Ziehm, P. Tapan, and B. Stunkard, “Progress in Development of an LENR Power Cell for Space, ” Abstract: Nuclear and Emerging Technologies for Space 2015 (NETS-2015), ICCF-19 International Conference on Condensed Matter Nuclear Science, Padua, Italy, April 13 – 17, 2015
- Miley, G. H., Kim, K.-J., Ziehm E., Patel, T., Stunkard, B,, "Progress in Development of an LENR Power Cell for Space," Nuclear and Emerging Technologies for Space, Albuquerque, NM, February 23 – 26, 2015
- Miley, G. H., Kim, K.-J., Patel, T., and Stunkard, B, “Cluster Based Nono-particles for high Pressure Hydrogen LENR Power Units,” Asia Pacific Clean Energy Summit, Honolulu, Hawaii, September 15 – 17, 2014
- Miley, G. H., K.-J. Kim, T. Patel, B. Stunkard, “Progress in Development of Low energy Nuclear Reaction (LENR) Power Cells for Space Applications,” 8th International Conference on Isotopes, Chicago, IL, August 24 – 28, 2014
- Miley, G. H., Ziehm, E., Patel, T., Osouf, A., Kim, K.-J., and Stunkard, B., “Distributed Power Source Using LENRs,” Third Conference on the Physics of Sustainable Energy, University of California, Berkeley, March 10 – 11, 2014
- K.-J. Kim, T. Patel, G. H. Miley, "Direct Borohydride Fuel Cell System Using A Novel Bipolar Plate Of Integrated Manifold," Fuel Cell Seminar & Energy Exposition, Columbus, OH, Oct. 21-24, 2013
- K.-J. Kim, G. H. Miley, " Fuel Cell and Hydrogen Degrees and College Curriculum Development," Fuel Cell Seminar & Energy Exposition, Columbus, OH, Oct. 21-24, 2013
- G. H. Miley, K.-J. Kim, T. Patel, E. Ziehm, B. Stunkard, K. Weichman, A. Osouf, K.-S. Lee, "Distributed Power Source Using Low Energy Nuclear Reactions," ICCF-18 International Conference on Condensed Matter Nuclear Science, Colombia, MO, July 21 – 27, 2013
- T. Patel, E. Ziehm, B. Stunkard, K. Weichman, A. Osouf, K.-S. Lee, K.-J. Kim, G. H. Miley, " Heat generation from Hydrogen/Deuterium Loading of Nanoparticles: Composition and temperature dependencies on heat output," ICCF-18 International Conference on Condensed Matter Nuclear Science, Colombia, MO, July 21 – 27, 2013
- G. H. Miley, A. Osouf, K. Weichman, E. Ziehm, B. Stunkard, T. Patel, K. Lee, K. J. Kim, “Study of Composition of Nanoparticles During Gas Loaded LENR Power Cell Operation,” NanoTech Conference & Expo, Washington D.C. May 12 – 16, 2013
- G. H. Miley and the NPL LENR Team, “A Space Power Source Based On Low Energy Nuclear Reactions (LENRs)”, STAIF II Conference, Abstracts, Albuquerque, NM, April 16 - 17, 2013
- G. H. Miley, X. Yang, K.-J. Kim, H. Hora, "Use of D/H Clusters in LENR and Recent Results from Gas Loaded Nanoparticle-Type Clusters," ICCF-17 International Conference on Condensed Matter Nuclear Science, Daejeon, Korea, August 12 – 17, 2012
- G.H. Miley, N. Luo, K-J Kim, “Regenerative Fuel Cell Energy Storage Technology for use with Renewable Energy Sources,” TechConnect World Conference & Expo, Anaheim, California, June 21–24, 2010
- G.H. Miley, N. Luo, K-J Kim, X. Yang, A.S. Ved, “Design of a Dry Borohydride/Peroxide Fuel Cell for Robotic Vehicles,” TechConnect World Conference & Expo, Anaheim, California, June 21–24, 2010
- G. Miley, N. Luo, K.-J. Kim, “A dry-borohydride/injected-hydrogen-peroxide fuel cell,” ASME 2010 Eighth International Fuel Cell Science, Engineering and Technology Conference, Brooklyn, New York, June 14-16, 2010
- K.-J. Kim, N. Luo, G. Miley, X. Yang, “An Air Independent Direct Liquid Fuel Cell System for Unmanned Underwater Vehicle.” 2009 Fuel Cell Seminar & Exposition, Palm Springs, California, November 16-19, 2009
- N. Luo, K.-J. Kim, G. Miley, X. Yang, A. Ved, “A Dry-Borohydride/Hydrogen-Peroxide Fuel Cell for Robotic Vehicles.” 2009 Fuel Cell Seminar & Exposition, Palm Springs, California, November 16-19, 2009
- A. Ved, G. Miley, K.-J. Kim, N. Luo, “Optimization of Direct Borohydride / Peroxide Fuel Cell : Water Management Perspective.” 2009 Fuel Cell Seminar & Exposition, Palm Springs, California, November 16-19, 2009
- K.-J. Kim, G. Miley, N. Luo and A. Ved, “System integration issues for a direct sodium borohydride fuel cell (DNBFC).” ASME 2009 Seventh International Fuel Cell Science, Engineering and Technology Conference, Newport Beach, California, June 8-10, 2009
- N. Luo, X. Yang, K. –J. Kim, J. Stubbins and G. Miley, “In-situ preparation of catalytic diffusion layers and its application in direct liquid fuel cells.” ASME 2009 Seventh International Fuel Cell Science, Engineering and Technology Conference, Newport Beach, California, June 8-10, 2009
- K.-J. Kim, R. Bernas, N. Luo, X. Yang and G. Miley, “A Novel Anode Electrode for Direct Borohydride Fuel Cell.” Clean Technology Conference & Expo 2009, Huston, Texas May 3-7, 2009
- G.. Miley, N. Luo, X. Yang, K.-J. Kim, G. Kopec, “Kinetics in a unique sodium borohydride regenerative fuel cell,” New Energy Technology Symposium at the 237th American Chemical Society National Meeting, Salt Lake City, Utah, March 22-25, 2009
- G.. Miley, K.-J. Kim, N. Luo, J. Shrestha “Advanced NaBH4/H2O2 Fuel Cell for Space Applications,” Space, Propulsion & Energy Sciences International Forum: SPESIF-2009, Huntsville, Alabama, March 16, 2009
- G. Miley, R. Bernas, K.-J. Kim, N. Luo, “Optimization of Catalyst Deposited Diffusion Layer for a DNBFC.” 2008 Fuel Cell Seminar & Exposition, 2008, Phoenix, Arizona, October 27-30
- Scott Lux, K.J.Kim et al., “Water management issues for direct borohydride / peroxide fuel cells.” ASME 2007 Fifth International Fuel Cell Science, Engineering and Technology Conference, New York, NY, June 18-20, 2007
- G.A.Fateyev, O.S.Rabinovich, K.J.Kim, “Metal hydride heat conversion on the basis of super-adiabatic thermal waves in porous media.” The 3rd international seminar - heat pipes, heat pumps, refrigerators, pp49~57, Minsk, Belarus, 1997
- G.A.Fateyev, O.S.Rabinovich, K.J.Kim, “Interaction of thermal waves with the poles of hydride heat converters incorporated in a porous medium.” The fifth international conference on hydrogen material science and chemistry of metal hydrides, pp180~181, Yalta, Ukraine, 1997
- G.A.Fateyev, K.J.Kim, “Numerical simulation and experimental study of a heat-transformation cycle in metal hydride media.” The third minsk international heat and mass transfer forum, Vol.7, pp169~182, Minsk, Belarus, 1996
- G.A.Fateyev, K.J.Kim, and others, “A Numerical Simulation of Metal Hydride Heat Pump Cycle.” The fourth international conference on hydrogen material science and chemistry of metal hydrides, p177, Yalta, Ukraine, 1995
- G.A.Fateyev, K.J.Kim, and others, “Super adiabatic Gas-Phase, Catalytic and Hybrid Combustion in Porous Media.” The twenty-fifth international symposium on combustion, Paper No. 25-703, Irvine CA, U.S.A., 1994
- G.A.Fateyev, K.J.Kim, and others, “An application method of the metal hydride thermal energy conversion in hybrid solar station.” The third international conference on hydrogen material science and chemistry of metal hydrides, Yalta, Ukraine, 1993
- K.J.Kim, J.O.Chae, “A performance simulation of spark ignition Wankel type rotary engine.” The sixth international pacific conference of automotive engineers, Paper No. 912479, Seoul, Korea, 1991
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26. KR 0531824 Fuel circulation control apparatus of fuel cell system
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34. KR 0517936 Fuel cell system having crystallization device
35. KR 0504871 Filtering apparatus of fuel cell system
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43. US 2013/262,883 Electrolytic synthesis of hydrogen peroxide directly from water and application thereof
44. WO 2006/019199 Fuel cell system
45. WO 2006/019198 Fuel cell system and controlling method thereof
46. WO 2006/019197 Fuel cell system
47. WO 2005/064729 Fuel cell system and control method thereof
48. WO 2005/064728 Fuel cell system
49. WO 2005/057710 Fuel cell system
50. WO 2005/057709 Structure for reducing internal circuit of fuel cell
51. WO 2005/057708 Bipolar plate of fuel cell and fabrication method thereof
52. WO 2005/057707 Bipolar plate of fuel cell
53. WO 2005/057706 Fuel cell system and control method thereof
54. WO 2005/055357 Membrane electrode assembly of fuel cell
55. WO 2004/105163 Fuel cell, electrode catalyst and electrode for fuel cell
56. US 2005/0255364 Bipolar plate of fuel cell
57. US 2005/0142418 Fuel cell system
58. US 2005/0142409 Fuel cell system and control method thereof
59. US 2005/0130026 Electrochemical battery, electrode thereof and method for manufacturing the same
60. US 2005/0130019 Structure for reducing internal circuit of fuel cell
61. US 2005/0130014 Bipolar plate of fuel cell and fabrication method thereof
62. KR 2010/0043336 Electrolytic synthesis of hydrogen peroxide directly from water and applications thereof
63. KR 2007/0001136 Fuel cell system
64. KR 2007/0001135 Fuel cell system and controlling method thereof
65. KR 2007/0001134 Fuel cell system
66. KR 2006/0011431 Fuel cell system
67. KR 2004/0052668 Voltage measurement device of fuel cell
68. KR 2004/0052667 Membrane electrode assembly of fuel cell and forming method of membrane's block layer thereof
69. KR 2004/0052666 Anode of fuel cell and manufacturing method thereof
70. KR 2004/0052359 Fuel tank for fuel cell and fuel tank contact device thereof
71. KR 2004/0048413 Hydrogen control device for fuel cell
72. KR 2004/0010909 Reaction body of hydrogen storage alloy
73. KR 2003/0062729 Optimum operation apparatus of fuel cell
74. KR 2003/0032363 Stack structure for fuel cell
75. KR 2003/0032362 Fuel supply structure for fuel cell stack
76. KR 2003/0032360 Fuel supply structure for fuel cell stack
77. KR 2003/0032033 Fuel supply structure for fuel cell stack
78. KR 2003/0030275 Operating method of fuel cell system
79. KR 2003/0010121 Fuel cell system
80. KR 2003/0010119 Fuel cell system
81. KR 2003/0010116 Boron fuel cell system
82. KR 2002/0078821 Cooling and heating device using hydrogen storage alloys
83. KR 2002/0078811 Cooling and heating device using hydrogen storage alloys
84. KR 2002/0078206 Cooling and heating device using hydrogen storage alloys
85. KR 2002/0078205 Oil separator for cooling and heating device using hydrogen storage alloys
86. KR 2002/0078202 Oil separator for cooling and heating device using hydrogen storage alloys
87. KR 2002/0078198 Air-conditioner using hydrogen storage alloys
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90. KR 2002/0077938 Reactor of heating and cooling device for hydrogen storage alloys and heating and cooling device thereof
91. KR 2002/0077937 Heating and cooling device of reactor for hydrogen storage alloys
92. KR 2002/0077934 Reactor heating and cooling device for hydrogen storage alloys
93. KR 2002/0077933 Heating and cooling device for hydrogen storage alloys and method thereof
94. KR 2002/0077932 Heating and cooling device for hydrogen storage alloys and method thereof
95. KR 2002/0077923 Heating and cooling device for hydrogen storage alloys
96. KR 2002/0077922 Heating and cooling device for hydrogen storage alloys and method thereof
97. KR 2002/0077909 Magnet for heating and cooling device for hydrogen storage alloys and manufacturing method thereof
98. KR 2002/0077908 Reactor of heating and cooling device for hydrogen storage alloys
99. KR 2002/0077907 Heating and cooling device for hydrogen storage alloys and method thereof
100. KR 2002/0075451 Heating and cooling device for hydrogen storage alloys
101. KR 2002/0044964 Cooling and heating device using hydrogen storage alloys
102. KR 2002/0044963 Cooling and heating device using hydrogen storage alloys
103. KR 2002/0044962 Cooling and heating device using hydrogen storage alloys
104. KR 2002/0044656 Heating and cooling device for hydrogen storage alloys and operating method thereof
105. KR 2002/0044655 Heating and cooling device for hydrogen storage alloys and operating method thereof
106. KR 2002/0044654 Reactor heating and cooling device for hydrogen storage alloys
107. KR 2002/0044653 Heating and cooling device for hydrogen storage alloys
108. KR 2002/0044652 Heating and cooling device for hydrogen storage alloys
109. KR 2002/0044651 Heating and cooling device for hydrogen storage alloys
110. KR 2002/0041189 Heating and cooling device of reactor for hydrogen storage alloys
111. KR 2002/0040983 Heating and cooling device for hydrogen storage alloys and method thereof
112. KR 2002/0040982 Method for controlling cooling and heating device using hydrogen storage alloys
113. KR 2002/0040981 Cooling and heating device using hydrogen storage alloys
114. KR 2002/0040979 Cooling and heating device using hydrogen storage alloys
115. KR 2002/0040978 Cooling and heating device using hydrogen storage alloys
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117. KR 2002/0038605 Cooling and heating device using hydrogen storage alloys
118. KR 2002/0038604 Cooling and heating device using hydrogen storage alloys
119. KR 2002/0038603 Cooling and heating device using hydrogen storage alloys
120. KR 2002/0038601 Cooling and heating device using hydrogen storage alloys
121. KR 2002/0038600 Cooling and heating device using hydrogen storage alloys
122. KR 2002/0038599 Cooling and heating device using hydrogen storage alloys
123. KR 2002/0038598 Cooling and heating device using hydrogen storage alloys and method for controlling the same
124. KR 2002/0038597 Method for controlling cooling and heating device using hydrogen storage alloys
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126. KR 2002/0038355 Heating and cooling device for hydrogen storage alloys and method thereof
127. KR 2002/0038354 Reactor for hydrogen storage alloys
128. KR 2002/0038353 Heating and cooling device for hydrogen storage alloys and method thereof
129. KR 2002/0038352 Heating and cooling device for hydrogen storage alloys
130. KR 2002/0038351 Heating and cooling device for hydrogen storage alloys and method thereof
131. KR 2002/0038350 Heating and cooling device for hydrogen storage alloys
132. KR 2002/0035707 Cooling and heating device using hydrogen storage alloys
133. KR 2002/0035705 Heating and cooling device using hydrogen storage alloys and method for controlling the same
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