• 제목/요약/키워드: oxidation characterization

검색결과 404건 처리시간 0.029초

마이크로파 가열에 의한 FAPO-5 분자체의 합성 및 특성 분석 (Syntheses of FAPO-5 Molecular Sieves with Microwave Irradiation and Their Characterization)

  • 장종산;이진호;정성화;황진수;김영호
    • 대한화학회지
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    • 제50권1호
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    • pp.53-59
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    • 2006
  • 분자체를 마이크로 파와 일반적인 수열 합성방법을 이용하여 같은 반응물로부터 제조하였으며 합성, 특성 분석 및 산화 반응 촉매로의 가능성을 비교하였다. FAPO-5는 마이크로 파에 의해 비교적 짧은 시간에 합성이 이루어 졌으며 일반 수열 합성에 비해 약 1/20 정도의 시간으로 합성이 가능하였다. 즉, 170oC에서 마이크로파의 경우 15분, 일반적인 수열 합성의 경우 약 6시간 이내에 합성이 완결되었다. 표면적 및 철의 배위 상태 등은 두 시료에서 큰 차이가 없었다. 마이크로파에 의해 얻어진 FAPO-5는 일반 수열 합성에 의해 얻어진 FAPO-5에 비해 에폭시화 반응에서 에폭시드의 수율이 높았으며 이는 상대적으로 큰 소수성 때문인 것으로 생각되었다.

K562 적혈구암 세포주의 표면 당단백질에 대한 단클론항체의 생성 및 특성 (Production and Characterization of a Monoclonal Antibody against Surface Glycoprotein, gp6 1, on K562 Erythroleukemia Cells)

  • 김한도;정재훈;홍선화;김정락;한규형;임운기;유미애;이경희;강호성
    • 한국동물학회지
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    • 제39권1호
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    • pp.12-20
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    • 1996
  • K562 적혈구암 세포는 phorbol 12-myristate 13-acetate(PMA)에 의해서 대핵세포로 분화되고 gpIlla의 증가, megakaryocyte와 유사한 형태학적 변화로 특징지워진다. 또한 K562 세포는 dimethy1 sulfoxide(DMSO)나 butyrate와 같은 화학적 유도원에 의해 적혈구로 분화가 유도되고 동시에 헤모글로빈이 축척된다. 본 연구에서는 K562 세포에 대한 단일클론 항체를 생성하고 이를 이용하고 61 KDa의 표면항원을 동정하였다. 단클론항체 EK-2에 의해 인지되는 61 KDa의 표면항원은 sialic acide가 풍부해 당단백질로 사료되고, 그 epitope는 neuraminidase 절단과 peroxidase oxidation에 민감하며, 열처리에는 안정하다. K562 세포의 대핵세포로 분화시에는 61 KDa 표면항원의 발현은 증가하며, 적혈구로 분회시에는 그 발현이 감소한다. EK-2 단클론항체는 조혈세포의 분화 및 암화과정의 분자적 수준을 연구하기 위한 면역학적 probe로 이용 가능할 것으로 기대된다.

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A Novel Method for Preparing of Oxoruthenates Complexes: trans-[RuO3(OH)2]2-, [RuO4]-, (n-Pr4N)+[RuO4]- and [RuO4 and Their Use as Catalytic Oxidants

  • Shoair, Abdel-Ghany F.
    • Bulletin of the Korean Chemical Society
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    • 제26권10호
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    • pp.1525-1528
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    • 2005
  • The synthesis and characterization of ${K_3[Ru(C_2O_4)3]{\cdot}4H_2O\;(C_2O_4}^{2-}$ = oxalato anoin) complex are described, and its redox properties (in buffer solution of pH = 12) have been investigated. This complex is used for in situ generation of oxoruthenates complexes which have been characterized by electronic spectroscopy. Reaction of ${K_3[Ru(C_2O_4)3]{\cdot}4H_2O$ with excess ${S_2O_8}^{2-}$ in molar KOH generates trans-${[RuO_3(OH)_2]^{2-}/S_2O_8}^{2-}$ reagent while with excess ${BrO_3}^-$ in molar $Na_2CO_3$ generates ${[RuO_4]^-/BrO_3}^-$ reagent. Avoiding the direct use of [$RuO_4$] the organic-soluble $(n-Pr_4N)^+[RuO_4]^-$, (TPAP) has been isolated by reaction of $K_3[Ru(C_2O_4)3]{\cdot}4H_2O$ with excess ${BrO_3}^-$ in molar carbonate and n-$Pr_4$NOH. In a mixture of $H_2O/CCl_4$ ruthenium tetraoxide can be generated by reaction of $K_3[Ru(C_2O_4)3]{\cdot}4H_2O$ with excess ${IO_4}^-$. The catalytic activities of oxoruthenates that have been made from $K_3[Ru(C_2O_4)3]{\cdot}4H_2O$ towards the oxidation of benzyl alcohol, piperonyl alcohol, benzaldehyde and benzyl amine at room temperature have been studied.

스테인리스강 금속 표면에 내열 저방사 산화물 코팅제 적용과 방사 특성 평가 (Heat Resistant Low Emissivity Oxide Coating on Stainless Steel Metal Surface and Characterization of Emissivity)

  • 임형미;권태일;김대성;이상엽;강동필;이승호
    • 한국재료학회지
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    • 제19권12호
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    • pp.649-656
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    • 2009
  • Inorganic oxide colloids dispersed in alcohol were applied to a stainless steel substrate to produce oxide coatings for the purpose of minimizing emissive thermal transfer. The microstructure, roughness, infrared emissive energy, and surface heat loss of the coated substrate were observed with a variation of the nano oxide sol and coating method. It was found that the indium tin oxide, antimony tin oxide, magnesium oxide, silica, titania sol coatings may reduce surface heat loss of the stainless steel at 300${\circ}C$. It was possible to suppress thermal oxidation of the substrate with the oxide sol coatings during an accelerated thermal durability test at 600${\circ}C$. The silica sol coating was most effective to suppress thermal oxidation at 600${\circ}C$, so that it is useful to prevent the increase of radiative surface heat loss as a heating element. Therefore, the inorganic oxide sol coatings may be applied to improve energy efficiency of the substrate as the heating element.

황화수소 산화세균인 새로운 Thiobacillus sp.의 분리 및 특성 (Isolation and Characterization of a New Hydrogen Sulfide-Oxidizing Bacterium Thiobacillus Sp.)

  • 차진명;이인화
    • 미생물학회지
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    • 제32권4호
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    • pp.252-257
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    • 1994
  • 황화수소 산화세균인 Thiobacillus sp.를 전남 화순의 폐탄광수에서 분리하였다. 분리된 균주는 그람음성의 운동성이 있고, 포자를 형성하는 간균이었으며, 환원된 무기 황화합물을 산화하여 에너지원으로 사용하는 호기성 통성 화학합성 영양균이었다. 분리균주는 thiosulfate를 첨가한 기본배지에서 유기물을 동화하며 성장하였고, 에너지원으로 사용된 thiosulfate는 32mM 이상의 농도에서는 오히려 기질억제 인자로 작용하여 균의 성장을 억제하였다. 최적 thiosulfate 농도는 32mM이었다. DNA의 G+C 함량은 65.0mol%이고, 세포내 주요 지방산중 비순산화 지방산은 16:1+7$_{cyc}$, 16:0과 수산화 지방산은 3-OH 12:0을 가지며, $C_{18}$의 미동정 가지형의 지방산도 포함하고 있었다. Ubiquinone system은 Q-9을 가지고 있었다. 위와 같은 생리생화학적 특성 결과로부터, 본 분리균주는 Thiobacillus sp. iw.의 새로운 종으로 판단하였다.

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Characterization of Glycerol Dehydrogenase from Thermoanaerobacterium thermosaccharolyticum DSM 571 and GGG Motif Identification

  • Wang, Liangliang;Wang, Jiajun;Shi, Hao;Gu, Huaxiang;Zhang, Yu;Li, Xun;Wang, Fei
    • Journal of Microbiology and Biotechnology
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    • 제26권6호
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    • pp.1077-1086
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    • 2016
  • Glycerol dehydrogenases (GlyDHs) are essential for glycerol metabolism in vivo, catalyzing its reversible reduction to 1,3-dihydroxypropranone (DHA). The gldA gene encoding a putative GlyDH was cloned from Thermoanaerobacterium thermosaccharolyticum DSM 571 (TtGlyDH) and expressed in Escherichia coli. The presence of Mn2+ enhanced its enzymatic activity by 79.5%. Three highly conserved residues (Asp171, His254, and His271) in TtGlyDH were associated with metal ion binding. Based on an investigation of glycerol oxidation and DHA reduction, TtGlyDH showed maximum activity towards glycerol at 60℃ and pH 8.0 and towards DHA at 60℃ and pH 6.0. DHA reduction was the dominant reaction, with a lower Km(DHA) of 1.08 ± 0.13 mM and Vmax of 0.0053 ± 0.0001 mM/s, compared with glycerol oxidation, with a Km(glycerol) of 30.29 ± 3.42 mM and Vmax of 0.042 ± 0.002 mM/s. TtGlyDH had an apparent activation energy of 312.94 kJ/mol. The recombinant TtGlyDH was thermostable, maintaining 65% of its activity after a 2-h incubation at 60℃. Molecular modeling and site-directed mutagenesis analyses demonstrated that TtGlyDH had an atypical dinucleotide binding motif (GGG motif) and a basic residue Arg43, both related to dinucleotide binding.

Synthesis and Photocatalytic Properties of Thermally Stable Metal-Oxide Hybrid Nanocatalyst with Ultrathin Oxide Encapsulation

  • Naik, Brundabana;Moon, Song Yi;Kim, Sun Mi;Jung, Chan Ho;Park, Jeong Young
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.317.2-317.2
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    • 2013
  • Ultrathin oxide encapsulated metal-oxide hybrid nanocatalysts have been fabricated by a soft chemical and facile route. First, SiO2 nanoparticles of 25~30 nm size have been synthesized by modified Stobber's method followed by amine functionalization. Metal nanoparticles (Ru, Rh, Pt) capped with polymer/citrate have been deposited on functionalized SiO2 and finally an ultrathin layer of TiO2 coated on surface which prevents sintering and provides high thermal stability while maximizing the metal-oxide interface for higher catalytic activity. TEM studies confirmed that 2.5 nm sized metal nanoparticles are well dispersed and distributed throughout the surface of 25 nm SiO2 nanoparticles with a 3-4 nm TiO2 ultrathin layer. The metal nanoparticles are still well exposed to outer surface, being enabled for surface characterization and catalytic activity. Even after calcination at $600^{\circ}C$, the structure and morphology of hybrid nanocatalysts remain intact confirm the high thermal stability. XPS spectra of hybrid nanocatalyst suggest the metallic states as well as their corresponding oxide states. The catalytic activity has been evaluated for high temperature CO oxidation reaction as well as photocatalytic H2 generation under solar simulation. The design of hybrid structure, high thermal stability, and better exposure of metal active sites are the key parameters for the high catalytic activity. The maximization of metal-TiO2 interface interaction has the great role in photocatalytic H2 production.

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철분 강화 식품첨가제용 리포좀의 제조 및 특성 (Preparation and Characterization of Liposome for Iron-Fortified Food Additive)

  • 이종우;전수진
    • 한국식품영양과학회지
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    • 제33권5호
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    • pp.864-868
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    • 2004
  • 철분은 생체 내에서 이루어지는 거의 모든 대사에 필수적인 성분이지만, 식음에 포함된 철분의 양은 극히 적어서 철분강화에 대한 연구가 꾸준히 진행되어 왔다. 이에 따라, 철분공여물질을 함유한 리포즘을 이용하여 철분 강화 식품첨가제를 개발하였다. 철분공여물질로 ferrous sulfate와 hemin을 사용하였으며, 이러한 철분 함유 리포좀을 제조하는데 가장 큰 문제점은 ferrous sulfate의 자체 산화와 ferrous sul fate와 hemin으로 인한 리포좀의 지질산화로 지적되었다 또한, ferrous sulfate에 의한 리포좀의 산화 정도는 hemin의 경우보다 낮은 것으로 관찰되었다. Ferrous sulfate의 자동 산화를 억제하기 위하여 수용성 항산화제인 ascorbic acid가 첨가되었으나, 첨가된 ascorbic acid는 ferrous sulfate와 hemin을 함유한 리포좀의 산화를 억제시키지 못했으며, 오히려 ferrous sulfate에 의한 리포좀의 산화를 촉진시키는 것으로 관찰되었다 여기에 지용성 항산화제인 $\alpha$-tocopherol을 추가적으로 첨가함으로써, ferrous sulfate의 자동산화를 억제하고 hemin과 ferrous sulfate에 의한 리포좀의 산화가 억제된 철분 함유 리포좀이 제조되었다.

Synthesis, Characterization, and Catalytic Properties of Gp 6 Metal Complexes of 1-N,N-dimethylaminomethyl-$1^{\prime}$,2-bis(diphenylphosphino)ferrocene (FcNPP). X-ray Crystal Structure of W$(CO)_4({\eta}^2-FcNPP(O)-P,N)$

  • Kim, Tae-Jeong;Kim, Yong-Hoon;Kim, Eun-Jin;Oh, Sang-Ho;Kim, Hong-Seok;Jeong, Jong-Hwa
    • Bulletin of the Korean Chemical Society
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    • 제15권5호
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    • pp.379-386
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    • 1994
  • Reactions of 1',2-bis(diphenylphosphino)-l-(N,N-dimethylaminomethyl)ferrocene (FcNPP) with $M(CO)_6$ (M=Cr, Mo, W) in the presence of TMNO (Trimethylamine oxide) in a stoichiometric ratio of 1 : 1.5 : 3.5 produced a series of Gp 6 metal carbonyl derivatives with a variety of coordination modes: M(CO)$_4({\eta}^2$-FcNPP-P,P) (M=Cr, Mo, W), $M(CO)_5({\eta}^1-FcNPP-P) (M=Mo, W)\;,\; M_2(CO)_9({\eta}^1\;,\;{\eta}^2-FcNPP-P,P,N) (M=Cr, Mo)\;,\;M_2(CO)_{10}({\eta}^1\;,\;{\eta}^1-FcNPP-P,P) (M=Cr, Mo, W)\;, and\;W(CO)_4({\eta}^2-FcNPP(O)-P,N)$. All these complexes were characterized by microanalytical and spectroscopic techniques. In one case, the structure of W(CO)$_4({\eta}^2$-FcNPP(O)-P,N) was determined by X-ray crystallography. Crystals are monocinic, space group P$2_{1/C}$, with a=10.147(2), b=19.902(3), c=19.821(4) ${\AA},\;{\beta}=96.88(2)^{\circ},\;V=3974(l){\AA}^3$, Z=4, and $D_{calc}=1.64 g cm^{-3}$. The geometry around the central tungsten metal is a distorted octahedron, with the nitrogen and phosphorus atoms being cis to each other. Some of these complexes exhibited catalytic activities in the allylic oxidation and epoxidation of cholesterly acetate. Other oxidation products were also formed with the different chemical yields and product distribution depending upon the ligand and the central metal.

Effect of H2O2 modification of H3PW12O40@carbon for m-xylene oxidation to isophthalic acid

  • Fang, Zhou-wen;Wen, Di;Wang, Zhi-hao;Long, Xiang-li
    • Korean Journal of Chemical Engineering
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    • 제35권11호
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    • pp.2172-2184
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    • 2018
  • The production of isophthalic acid (IPA) from the oxidation of m-xylene (MX) by air is catalyzed by $H_3PW_{12}O_{40}$ (HPW) loaded on carbon and cobalt. We used $H_2O_2$ solution to oxidize the carbon to improve the catalytic activity of HPW@C catalyst. Experiments reveal that the best carbon sample is obtained by calcining the carbon at $700^{\circ}C$ for 4 h after being impregnated in the 3.75% $H_2O_2$ solution at $40^{\circ}C$ for 7 h. The surface characterization displays that the $H_2O_2$ modification leads to an increase in the acidic groups and a reduction in the basic groups on the carbon surface. The catalytic capability of the HPW@C catalyst depends on its surface chemical characteristics and physical property. The acidic groups play a more important part than the physical property. The MX conversion after 180 min reaction acquired by the HPW@C catalysts prepared from the activated carbon modified in the best condition is 3.81% over that obtained by the HPW@C catalysts prepared from the original carbon. The IPA produced by the former is 46.2% over that produced by the latter.