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Sung June Cho
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Eng. 5A-223
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(Lab) (82)-62-530-1902
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(Cell Phone)
(82)-16-464-3528
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(Fax) (82)-62-530-1909
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sjcho@chonnam.ac.kr
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1988. 3 - 1992. 2, Department of Chemistry, Korea Advanced Institute of Science and Technology
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1992. 3 - 1994. 2, Department of Chemistry, Korea Advanced Institute of Science and Technology
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1994. 3 - 1997. 2, Department of Chemistry, Korea Advanced Institute of Science and Technology
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1997. 5 - 2002. 12, Senior researcher, Korea Institute of Energy Research
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Production and storage of methane and hydrogen/Fabrication of functional nanomaterials and its characterization by NMR, TEM and XAFS
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Sung June Cho, Kwang Sup Song, In Soo Ryu, Yong Seog Seo, Min Woong Ryoo, and Sung Kyu Kang, ¡°Characteristics of methane combustion over La-Cr-O catalysts¡± Catal. Lett., 1999, 58, 63
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Yong Seog Seo, Sung June Cho, Sung Kyu Kang and Hyun Dong Shin, ¡°Experimental and numerical studies on combustion characteristics of a catalytically stabilized combustor¡± Catalysis Today, 2000, 59, 75-86
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Sung June Cho and Sung Kyu Kang ¡°Reversible Structural Transformation of Palladium Catalyst Supported on La-Al2O3 Probed with X-ray Absorption Fine¡± J. Phys. Chem. B, 2000, 104, 8124.
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Sung June Cho, Yong Seog Seo, Kwang Sup Song, Nam Jo Jeong and Sung Kyu Kang ¡°Surfactant-meditated synthesis of metal substituted hexaaluminate from alumina sol¡± Applied Catalysis B: Environmental, 2001, 30, 351.
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Sung June Cho and Ryong Ryoo ¡°Formation and Growth of of Nano Sized RuIr Bimetallic Cluster Supported on NaY Zeolite¡± J. Phys. Chem. B., 2001, 105, 1293.
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Study on key technologies for ethylene production system development from gaseous raw material, KIER, 1999. 7
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Development of NOx-free chemical-looping combustion technology, KIER, 2001. 12
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Development of hydrogen storage techniques using carbon-based materials (I), KIER, 2001. 8
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Development of hydrogen storage techniques using carbon-based materials (II), KIER, 2002. 8
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Lab Name : Clean Energy Technology Laboratory
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My laboratory aims to develop an innovative technology for methane and hydrogen production, storage and utilization using functional nanomaterials. Microporous and mesoporous ceramics and organic-inorganic hybrid composite have been synthesized using novel nanoreactor. Nuclear magnetic resonance, transmission electron microscope and X-ray absorption fine structure have been extensively used for the characterization of the nanostructure. Environmental and energy application using the functional nanomaterial is an ultimate goal of my laboratory. |

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Copyright ¨Ï 2002. by Faculty of Applied Chemical Engineering
Chonnam National University, 300 yongbong-dong, puk-gu, gwangju 500-757, KOREA Tel: 82-62-530-1900 Fax:82-62-530-1909
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