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Improvement of Liquid Absorption Properties of Nonwoven Polypropylene Substrates by Low Pressure Plasma Treatment with $CH_4-O_2$ Mixture Gas
Lopez. R., Pascua. M., Garcia-Sanoguera. D., Sanchez-Nacher. L., Balart. R. 한국섬유공학회 Fibers and polymers 6 Pages
한국섬유공학회 Fibers and polymers 2012, Vol.13 No.9 1139-1144 (6 pages)
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Catalytic Mechanism for Growth of Carbon Nanotubes under CO-H2 Gas Mixture
Chung. Uoo-Chang, Kim. Yong-Hwan, Lee. Deok-Bo, Jeong. Yeon-Uk, Chung. Won-Sub, Cho. Young-Rae, Park. Ik-Min 대한화학회 Bulletin of the Korean Chemical Society 4 Pages
대한화학회 Bulletin of the Korean Chemical Society 2005, Vol.26 No.1 103-106 (4 pages)
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Original Article : Chemopreventive effects of garlic and mugwort mixture extract on Helicobacter pylori-associated mouse gastric carcinogenesis
So Young Youm , Tae Wang Kim , Sang Kyung Shin , Heon Sang Jeong , Jong Koo Kang , Tae Myoung Kim , Kil Ho Kim , Byeong 대한수의학회 Korean Journal of Veterinary Research(구 대한수의학회지) 7 Pages
대한수의학회 Korean Journal of Veterinary Research(구 대한수의학회지) 2014, 제 54권 제 3호 7 171-177 (7 pages)
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Biocomposite membranes based on poly(3-hydroxybutyrate-co-3-hydroxyvalerate) and multiwall carbon nanotubes for gas separation
Mongyoung Huh, Hye Min Lee, Young Soo Park, Seok Il Yun 한국탄소학회 Carbon Letters 6 Pages
한국탄소학회 Carbon Letters 2017, Vol.21 17 116-121 (6 pages)
gas separation membranes is currently an active research area because of the rapidly increasing interest in carbon dioxide capture and hydrogen recovery, which are two of the most important solutions for problems related to energy and the environment [1-4]. Polymer membranes show selectivity in the separation of gases due to differences in the permeability of individual gases through the polymer film [3,4]. Even though advantageous in terms of low cost, the segmental flexibility of polymers has... -
NO gas sensing ability of activated carbon fibers modified by an electron beam for improvement in the surface functional group
Mi-Seon Park, Sangmin Lee, Min-Jung Jung, Hyeong Gi Kim, Young-Seak Lee 한국탄소학회 Carbon Letters 7 Pages
한국탄소학회 Carbon Letters 2016, Vol.20 3 19-25 (7 pages)
pristine ACFs to 39.53% and 41.75% for ACFs treated with hydrogen peroxide and potassium hydroxide solutions, respectively. We discover that the NO gas sensitivity of the gas sensor fabricated using the modified ACFs as an electrode material is increased, although the specific surface area of the ACFs is decreased because of the recovery of their crystal structure. This is attributed to the static electric interaction between NO gas and the non-carbonyl groups introduced onto the ACF surfaces.


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