• 제목/요약/키워드: chemical reactivity

검색결과 814건 처리시간 0.028초

The Knoevenagel Reaction of Malononitrile with Acetylacetone: New Route of Pyrazole, Pyrazolo[2,3-C]pyridine, Benzene, Pyridazine and Benzo[C]pyridazine Derivatives

  • Mohareb, Rafat Milad
    • Archives of Pharmacal Research
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    • 제14권4호
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    • pp.379-384
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    • 1991
  • The Knoevenagal reaction of malononitrile and acetylacetone gave the acyclic product 3 which was separated in a good yield and identified. The reactivity of 3 towards some chemical reagents is studied. Thus, the reaction of 3 with aromatic aldehydes, hydrazines and cyanomethylene derivatives gave products 6-12. Reaction of 3 with benzenediazonium chloride gave the primidine derivative 14.

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Preparation and Application of ACFs Derived from the Petroleum Pitch and the Organometallic Compounds

  • Hong, Ik-Pyo;Ha, Baik-Hyon
    • Carbon letters
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    • 제3권3호
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    • pp.146-151
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    • 2002
  • Activated carbon fibers were prepared from the petroleum isotropic pitch and organometallic compounds. The metalsvwere dispersed uniformly in the ACFs. The specific surface area and pore size distributions of metal containing ACFsvwere measured. The mesopores of ACFs were developed by Co, Ni, and Mn metals addition and the catalytic reactivityvof ACFs'SOx removal was increased by adding Ni and Pd metals. It was found that the mesopores did not work forvthe improvement of catalytic reactivity of ACFs' SOx removal with the blank experiment using the metal removedvACFs.

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IGCC용 아연계 탈황제의 반응특성 (The Chemical Reactivity of Zinc Based Sorbents for IGCC)

  • 이중범;류청걸;위영호;안달홍
    • 한국에너지공학회:학술대회논문집
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    • 한국에너지공학회 1999년도 추계 학술발표회 논문집
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    • pp.61-66
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    • 1999
  • 화석 연료중 석탄을 가장 경제적이고, 환경친화적으로 이용하는 신발전기술로 석탄가스 복합발전(IGCC)이 있으며, 이러한 신발전 기술의 핵심은 석탄가스화와 석탄가스 중에 있는 불순물을 제거하는 정제 기술이다. 현재 저온정제와 기존의 복합발전 시스템을 이용한 1세대 IGCC는 상용단계에 있으며 열효율은 40% 전후이다. 이런 IGCC의 발전 단가를 줄이고 열효율을 45%이상 증가시켜 타 발전기술과 경쟁력을 갖추기 위해서는 고온고압에서 석탄가스 중에 있는 불순물을 제거하는 고온정제기술(hot gas cleanup)은 필수적이다.(중략)

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Antioxidant effect of flavonoid, myricetin with GSH, vitamin E, vitamin C on B16F10, murine melanoma cell

  • Yu, Ji-Sun;Kim, An-Keun
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2-2
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    • pp.144.2-145
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    • 2003
  • Reactive Oxygen Species (ROS) are produced during normal cellular function. ROS are very transient species due to their high chemical reactivity that leads to lipid peroxidation and oxidation of some enzyme, massive protein oxidation and degradation. Under normal conditions, antioxidant are substances that either directly or indirectly protect cells against adverse effects of ROS. Several biologically important compounds have been reported to have antioxidant functions. These incluce vitamin C, vitamin E, GSH, flavonoids. superoxidee dismutase(SOD), glutathione peroxidase(GPX) and catalase(CAT). (omitted)

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매체 순환식 수소제조공정에 적합한 Fe2O3/ZrO2 산소전달입자에 구리 산화물 첨가가 미치는 영향에 관한 연구 (The Effect of addition of CuO to Fe2O3/ZrO2 Oxygen Carrier for Hydrogen Production by Chemical Looping)

  • 이준규;김초균;배기광;박주식;강경수;정성욱;김영호;주종훈;조원철
    • Korean Chemical Engineering Research
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    • 제54권3호
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    • pp.394-403
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    • 2016
  • 매체 순환식 수소제조공정은 직접 고순도의 수소를 생산하는 동시에 $CO_2$ 포집 비용을 최소화할 수 있는 고효율/친환경적인 공정이다. 본 공정은 레독스 반응을 통하여 산소를 전달하고 이때 철 산화물계 산소전달입자를 이용하게 된다. 구리 산화물이 첨가된 철-구리 산화물계 산소전달입자는 반응성 향상이 보고되어 왔으나 철 산화물과 구리 산화물 간 상호작용에 대한 이해가 부족한 실정이다. 본 연구에서는 여러 기기 분석법(SEM/EDX, XRD, BET, TPR, XPS, TGA)을 통하여 철-구리 산화물계 산소전달입자의 레독스 반응성 향상을 지배하는 주요인을 연구하였다. 첨가된 구리 산화물은 철 산화물 성장 억제제 역할 뿐만 아니라 화학적 환경 변화를 일으키는 화학적 촉매제(chemical promoter) 역할도 하는 것이 발견되었다. 철-구리 산화물계 산소전달입자의 우수한 환원 반응성은 구리 산화물의 도입으로 $Fe^{2+}$ 농도 증가 및 표면 특성 변화 때문이며, 우수한 물분해 특성은 산화 과정에서 일어나는 철 산화물의 응집을 구리 산화물이 억제시킨 것으로 판단되었다.

매체순환연소용 산소전달입자의 반응성에 미치는 H2S의 영향 (Effect of H2S on Reactivity of Oxygen Carrier Particle for Chemical Looping Combustion)

  • 김하나;문종호;진경태;백점인;류호정
    • 한국수소및신에너지학회논문집
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    • 제27권4호
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    • pp.412-420
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    • 2016
  • Effect of $H_2S$ on reactivity of oxygen carrier was measured and discussed using fluidized bed reactor and SDN70 oxygen carrier. We could get 100% of fuel conversion and $CO_2$ selectivity even though $H_2S$ containing simulated syngas was used as fuel for reduction. Absorbed sulfur was released during oxidation and $N_2$ purge step after oxidation as $SO_2$ form. We could get 100% of fuel conversion and $CO_2$ selectivity during cyclic reduction-oxidation tests up to 10th cycle. However, only 6~7% of sulfur can be removed during oxidation and $N_2$ purge step and 93~94% of sulfur was accumulated in the oxygen carrier. Therefore we could conclude that total removal of sulfur was not possible. $SO_2$ emission during oxidation decreased as the number of cycle increased. Therefore we could expect that the reactivity of oxygen carrier will be decreased with time.

Controlled Release Behavior of pH-Responsive Composite Hydrogel Containing Activated Carbon

  • Yun, Ju-Mi;Im, Ji-Sun;Oh, Ae-Ri;Lee, Young-Seak;Kim, Hyung-Il
    • Carbon letters
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    • 제10권1호
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    • pp.33-37
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    • 2009
  • Activated carbon (AC) is one of the most effective adsorbents for organic compounds because of their extended surface area, high adsorption capacity, microporous structure and special surface reactivity. The composites of pH-sensitive hydrogel and activated carbon were prepared in order to improve the loading capacity of drug. The pH-sensitive hydrogel matrix swelled well in the basic condition to release the drug loaded in AC. The release of drug was controlled depending on both the pH due to the ionization of the carboxylic acid group and the AC due to the surface properties.

Preparation of Novel Magnesium Precursors and MgO Thin Films Growth by Atomic Layer Deposition (ALD)

  • Kim, Hyo-Suk;park, Bo Keun;Kim, Chang Gyoun;Son, Seung Uk;Chung, Taek-Mo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.364.2-364.2
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    • 2014
  • Magnesium oxide (MgO) thin films have attracted great scientific and technological interest in recent decades. Because of its distinguished properties such as a wide band gap (7.2 eV), a low dielectric constant (9.8), a low refractive index, an excellent chemical, and thermal stability (melting point=$2900^{\circ}C$), it is widely used as inorganic material in diverse areas such as fire resistant construction materials, optical materials, protective layers in plasma display panels, buffer layers of multilayer electronic/photonic devices, and perovskite ferroelectric thin films. Precursor used in the ALD requires volatility, stability, and low deposition temperature. Precursors using a heteroleptic ligands with different reactivity have advantage of selective reaction of the heteroleptic ligands on substrate during ALD process. In this study, we have synethesized new heteroleptic magnesium precursors ${\beta}$-diketonate and aminoalkoxide which have been widely used for the development of precursor because of the excellent volatility, chelating effects by increasing the coordination number of the metal, and advantages to synthesize a single precursor. A newly-synthesized Mg(II) precursor was adopted for growing MgO thin films using ALD.

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Synthesis and Catalytic Applications of Ruthenium(0) Nanoparticles in Click Chemistry

  • Kumar, Avvaru Praveen;Baek, Min-Wook;Sridhar, Chirumarry;Kumar, Begari Prem;Lee, Yong-Ill
    • Bulletin of the Korean Chemical Society
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    • 제35권4호
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    • pp.1144-1148
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    • 2014
  • Here we report a facile synthesis of ruthenium (Ru) Nanoparticles (NPs) by chemical co-precipitation method. The calcination of ruthenium hydroxide samples at $500^{\circ}C$ under hydrogen atmosphere lead to the formation of $Ru^0$ NPs. The size and aggregation of Ru NPs depends on the pH of the medium, and type of surfactant and its concentration. The X-ray diffraction (XRD), scanning electron microscope (SEM) and transmission electron microscope image (TEM) analyses of particles indicated the formation of $Ru^0$ NPs, and have 10 to 20 nm sizes. As-synthesized $Ru^0$ NPs are characterized and investigated their catalytic ability in click chemistry (azidealkyne cycloaddition reactions), showing good results in terms of reactivity. Interestingly, small structural differences in triazines influence the catalytic activity of $Ru^0$ nanocatalysts. Click chemistry has recently emerged to become one of the most powerful tools in drug discovery, chemical biology, proteomics, medical sciences and nanotechnology/nanomedicine. In addition, preliminary tests of recycling showed good results with neither loss of activity or significant precipitation.