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고장면,D. Soundarajan,박정훈,양승대,김상욱,김광만,유국현 한국물리학회 2012 Current Applied Physics Vol.12 No.1
a-Cobalt hydroxide is synthesized through a novel radiation-induced route using a cobalt nitrate hexahydrate isopropanol solution by irradiating 60Co g-rays. The as-prepared product shows a layerstructured mesoporous morphology with an average size of 250 nm. Crystalline property analysis exhibits the presence a-Co(OH)2 as a predominant phase with a tiny amount of secondary phases of b-Co(OH)2 and CoO. X-ray photoelectron spectroscopy discloses the existence of Co as Co(OH)2 and CoO with a stoichiometric ratio of 76.7:23.3. In addition, the supercapacitive properties of the product are investigated using cyclic voltammetry and impedance spectroscopy in 1M KOH aqueous solution,showing a maximum capacitance value of 246.7 F g-1 at a scan rate of 5 mV s-1.
Ko, J.M.,Soundarajan, D.,Park, J.H.,Yang, S.D.,Kim, S.W.,Kim, K.M.,Yu, K.H. Elsevier 2012 Current Applied Physics Vol.12 No.1
α-Cobalt hydroxide is synthesized through a novel radiation-induced route using a cobalt nitrate hexahydrate isopropanol solution by irradiating <SUP>60</SUP>Co γ-rays. The as-prepared product shows a layer-structured mesoporous morphology with an average size of 250 nm. Crystalline property analysis exhibits the presence α-Co(OH)<SUB>2</SUB> as a predominant phase with a tiny amount of secondary phases of β-Co(OH)<SUB>2</SUB> and CoO. X-ray photoelectron spectroscopy discloses the existence of Co as Co(OH)<SUB>2</SUB> and CoO with a stoichiometric ratio of 76.7:23.3. In addition, the supercapacitive properties of the product are investigated using cyclic voltammetry and impedance spectroscopy in 1M KOH aqueous solution, showing a maximum capacitance value of 246.7 F g<SUP>-1</SUP> at a scan rate of 5 mV s<SUP>-1</SUP>.
Analysis of the vomeronasal receptor repertoire, expression and allelic diversity in swine
Dinka, H.,Le, M.T.,Ha, H.,Cho, H.,Choi, M.K.,Choi, H.,Kim, J.H.,Soundarajan, N.,Park, J.K.,Park, C. Academic Press 2016 Genomics Vol.107 No.5
<P>Here we report a comprehensive analysis of the vomeronasal receptor repertoire in pigs. We identified a total of 25 V1R sequences consisting of 10 functional genes, 3 pseudogenes, and 12 partial genes, while functional V2R and FPR genes were not present in the pig genome. Pig V1Rs were classified into three subfamilies, D, F, and J. Using direct high resolution sequencing-based typing of all functional V1Rs from 10 individuals of 5 different breeds, a total of 24 SNPs were identified, indicating that the allelic diversity of V1Rs is much lower than that of the olfactory receptors. A high expression level of V1Rs was detected in the vomeronasal organ (VNO) and testes, while a low expression level of V1Rs was observed in all other tissues examined. Our results showed that pigs could serve as an interesting large animal model system to study pheromone-related neurobiology because of their genetic simplicity. (C) 2015 Published by Elsevier Inc.</P>