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폴리페닐카보실란을 이용한 SiOC가 코팅된 스테인리스스틸 제조 및 이의 내부식성 특징
김종일,이윤주,김수룡,김영희,김정일,우창현,최두진,Kim, Jong-Il,Lee, Yoon-Joo,Kim, Soo-Ryong,Kim, Young-Hee,Kim, Jung-Il,Woo, Chang-Hyn,Choi, Doo-Jin 한국재료학회 2011 한국재료학회지 Vol.21 No.1
To improve the chemical stability of metal, the ceramic coatings on metallic materials have attracted interest from many researchers due to the chemical inertness of ceramic materials. To endure strong acids, SiOC coating on metal substrate was carried out by dip coating method using 20wt% polyphenylcarbosilane solution; SiC powder was added to the solution at 10wt% and 15wt% to improve the mechanical properties and to prevent cracks of the film. Thermal oxidation as a curing step was carried out at $200^{\circ}C$ for crosslinking of the polyphenylcarbosilane, and the coating samples were pyrolysized at $800^{\circ}C$ under argon to convert the polyphenylcarbosilane to SiOC film. The thicknesses of the SiOC coating films were $2.36{\mu}m$ and $3.16{\mu}m$. The quantities of each element were measured as $SiO_{1.07}C_{6.33}$ by EPMA, and it can be confirmed that the SiOC film from polyphenylcarbosilane was formed in a manner that was carbon rich. The hardness of the SiOC film was found to be 3.2Gpa through nanoindentor measurement. No defect including cracks appeared in the SiOC film. The weight loss of the SiOC coated stainless steel was within 2% after soaking in 10% HCl solution at $80^{\circ}C$ for one week. From these results, SiOC coating shows good potential for application to protect against severe chemical corrosion of stainless steel.
김종일,정중현,도시홍,황해선,김성철,김중환 ( Jong Il Kim,Jung Hyun Jeong,Sih Hong Doh,Hae Sun Hwang,Sung Chuel Kim,Jung Hwan Kim ) 한국센서학회 1997 센서학회지 Vol.6 No.1
Bismuth germanate crystals well known as scintillator were grown by Czochralski method. In order to understand a mechanism of radiation resistance in Eu-doped BGO, we measured radiation induced-absorption spectra, excitation spectra, emission spectra and luminescence lifetimes of BGO crystals. We found that the charge transfer state of Eu^(3+) ion is to play a key role to enhance the radiation resistance in BGO crystal. The ^5D_0 emission of Eu^(3+) ions that is not suitable for the radiation detectors due to a long decay time was found to be increased with increasing europium concentration. In the BGO crystal doped with 0.1 mole%, the density of radiation induced color centers was reduced about twenty times and the light output of ^5D_0 was negligible by comparing to that of BGO.
고농도 염에 의한 Deinococcus radiodurans RecA 단백질의 DNA 비의존성 ATPase 역가의 활성화
김종일,Kim, Jong-Il 한국미생물학회 2010 미생물학회지 Vol.46 No.4
D. radiodurans RecA 단백질은 DNA에 결합한 DNA-단백질 복합체만이 ATPase 활성을 나타내며. 보통의 낮은 염 농도조건에서는 DNA가 존재하지 않으면 RecA 단백질에 의한 ATP 가수분해는 거의 일어나지 않았으나 이러한 ATP 가수분해현상은 높은 농도의 염을 첨가하게 되면 1,000배 활성화 되었으며 1.6 M KCl이 존재할 때 ATP 혹은 dATP를 가수분해 하였다. DNA가 존재하지 않을 때 염에 의해 촉진되는 활성은 RecA 단백질 농도에 비례하였고, 더 높은 염농도에서 더 높은 ATP 가수분해 활성이 나타났다. 이러한 활성화 현상을 다양한 종류의 이온 형태에서 분석하였을 때 1.6 M Cl 음이온이 존재할 때 양이온의 형태에 따른 활성화 정도는 $K^+{\geq}Na^+$> $NH_4^+$의 경향을 보였으며, 1.6 M의 K 양이온 존재할 때 음이온의 형태에 따른 활성화는 glutamate > $Cl^-$ > acetate > $PO_4^-$의 순서로 높게 나타났다. 고농도의 염이 존재하는 조건에서 DNA 비의존성 ATPase의 활성은 비교적 넓은 범위 최적 조건인 pH7과 pH 8 사이에서 최대 활성을 보였고, 기질에 대한 친화도면에서도 외가닥 DNA 의존성 활성보다는 이중가닥 DNA 의존성 활성형태를 보였다. 고농도의 염이 첨가되고 DNA가 존재하지 않을 때 RecA 단백질에 의한 ATP 가수분해를 위한 RecA 단백질의 활성 종 형태는 최소 3개의 RecA 단백질이 결합되어 있는 과량체로 작용하는 것으로 나타났다. Deinococcus radiodurans RecA protein, when bound to DNA, exhibits a DNA-dependent ATPase. In the absence of DNA, the rate of RecA protein-promoted ATP hydrolysis drops 1,000-fold under the physiological concentrations of salt. This DNA-independent activity can be stimulated to levels approximating those observed with DNA by adding high concentrations (approximately 1.6 M) of a wide variety of salts. This effect was characterized by varying salt concentration and comparing the effects of different ion types. The higher concentrations of salt stimulated the ATP hydrolysis by RecA protein in the absence of DNA. At 1.6 M chloride, the observed stimulation showed the following cation trend $K^+{\geq}Na^+$ > $NH_4^+$ and the following anion sequence was observed: $glutamate^- \; > \; C1^- \;> \; acetate^-\; > \;PO_4^-$ at 1.6 M $K^+$. The catalytic properties of the salt-stimulated ATP hydrolysis reaction was optimal between pH 7.0 and 8.0, which was similar to the double stran nded DNA-dependent ATPase activities of Deinococcus radiodurans RecA protein. In the absence of DNA the active species for ATP hydrolysis by RecA protein was shown to be an aggregate of three RecA protein molecules.