• 제목/요약/키워드: $Zn^{2+}$

검색결과 7,913건 처리시간 0.047초

Stability of ZnAl2O4 Catalyst for Reverse-Water-Gas-Shift Reaction (RWGSR)

  • Joo, Oh-Shim;Jung, Kwang-Deog
    • Bulletin of the Korean Chemical Society
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    • 제24권1호
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    • pp.86-90
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    • 2003
  • Reverse-Water-Gas-Shift reaction (RWGSR) was carried out over the ZnO, $Al_2O_3,\;and\;ZnO/Al_2O_3$ catalysts at the temperature range from 400 to 700 ℃. The ZnO showed good specific reaction activity but this catalyst was deactivated. All the catalysts except the $ZnO/Al_2O_3$ catalyst (850 ℃) showed low stability for the RWGSR and was deactivated at the reaction temperature of 600 ℃. The $ZnO/Al_2O_3$ catalyst calcined at 850 ℃ was stable during 210 hrs under the reaction conditions of 600 ℃ and 150,000 GHSV, showing CO selectivity of 100% even at the pressure of 5 atm. The high stability of the $ZnO/Al_2O_3$ catalyst (850 ℃) was attributed to the prevention of ZnO reduction by the formation of $ZnAl_2O_4$ spinel structure. The spinel structure of $ZnAl_2O_4$ phase in the $ZnO/Al_2O_3$ catalyst calcined at 850 ℃ was confirmed by XRD and electron diffraction.

Synthesis of ZnO nanoparticles and their photocatalytic activity under UV light

  • 남상훈;김명화;부진효
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.423-423
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    • 2011
  • Zinc oxide is metal oxide semiconductor with the 3.37 eV bandgap energy. Zinc oxide is very attractive materials for many application fields. Zinc Oxide has many advantages such as high conductivity and good transmittance in visible region. Also it is cheaper than other semiconductor materials such as indium tin oxide (ITO). Therefore, ZnO is alternative material for ITO. ZnO is attracting attention for its application to transparent conductive oxide (TCO) films, surface acoustic wave (SAW), films bulk acoustic resonator (FBAR), piezoelectric materials, gas-sensing, solar cells and photocatalyst. In this study, we synthesized ZnO nanoparticles and defined their physical and chemical properties. Also we studied about the application of ZnO nanoparticles as a photocatalyst and try to find a enhancement photocatalytic activity of ZnO nanorticles.. We synthesized ZnO nanoparticles using spray-pyrolysis method and defined the physical and optical properties of ZnO nanoparticles in experiment I. When the ZnO are exposed to UV light, reduction and oxidation (REDOX) reaction will occur on the ZnO surface and generate O2- and OH radicals. These powerful oxidizing agents are proven to be effective in decomposition of the harmful organic materials and convert them into CO2 and H2O. Therefore, we investigated that the photocatalytic activity was increased through the surface modification of synthesized ZnO nanoparticles. In experiment II, we studied on the stability of ZnO nanoparticles in water. It is well known that ZnO is unstable in water in comparison with TiO2. Zn(OH)2 was formed at the ZnO surface and ZnO become inactive as a photocatalyst when ZnO is present in the solution. Therefore, we prepared synthesized ZnO nanoparticles that were immersed in the water and dried in the oven. After that, we measured photocatalytic activities of prepared samples and find the cause of their photocatalytic activity changes.

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용액상에서 합성된 ZnO 입자의 생성과정에 관한 연구 (A Study on the Growth Pattern of ZnO Particles in Chemical Solutions)

  • 김학수;김동환
    • 한국재료학회지
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    • 제15권10호
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    • pp.678-682
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    • 2005
  • We studied the possibility of $Zn_4O(Ac)_2(OH)$ formation as a precursor for ZnO nano particles in sol-gel method. Four different additives such as tetra methyl ammonium hydroxide, mono ethanol amine (MEA), LiOH, and $H_2O$ were used for zinc acetate dissolved in 2-methoxy ethanol. ZnO particles of 5-6 nm in size were observed. Existence of $Zn_4O(Ac)_6$ was not verified. $Zn_4O(Ac)_2(OH)$ molecules were observed and they were believed to be the precursors of ZnO. A peak at 275nm in UV-Vis analysis was observed In the case of MEA and $H_2O$ but no ZnO particles were detected in transmission electron microscopy.

액상침전법으로 제조된 ZnO와 ZnO-CuO후막의 일산화탄소 감응특성 (CO gas sensing characteristics of ZnO and ZnO-CuO thick films prepared by acquous precipitation)

  • 전석택;최우성;백승철
    • E2M - 전기 전자와 첨단 소재
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    • 제9권9호
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    • pp.925-932
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    • 1996
  • Using the d.c. 2-probe method, we have examined the temperature dependence of CO gas sensitivity of pure ZnO and ZnO CuO thick films prepared by the acqueous precipitation. At 200ppm CO gas, pure ZnO thick film shows the maximum sensitivity of -6.5 at 300.deg. C. On the other hand, the maximum sensitivity of 1-5 mol% and 10-15 mol% CuO added ZnO thick films are 2.8-2.5 and 1.6, respectively. Therefore, the sensitivity of pure ZnO thick film is about three times larger than those of ZnO-CuO thick films. We suggest that the promotion of maximum sensitivity is caused by low packing and the increase of chemical adsorptions for $O_{2}$ gas.

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Two Crystal Structures of $Tl^+$ and $Zn^{2+}$ Exchanged Zeolite A, $Tl_{12-2x}Zn_x-A$ (x=4.3 and 3.25)

  • Mi Suk Jeong;Seong Hwan Song;Young Wook Han;Yang Kim
    • Bulletin of the Korean Chemical Society
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    • 제11권2호
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    • pp.150-154
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    • 1990
  • The structures of $Tl_{12-2x}Zn_x-A$ (x = 4.3 and 3.25), vacuum dehydrated zeolite A with all $Na^+$ ions replaced by $Tl^+$ and $Zn^{2+}$ as indicated, have been determined by single-crystal X-ray diffraction techniques in cubic space group Pm3m at 21(1) $^{\circ}C$ (a=12.100(2) ${\AA}$ for $Tl_{3.4}Zn_{4.3}-A$ and a=12.092(2) ${\AA}$ for $Tl_{5.5}Zn_{3.25}-A$). The crystals of $Tl_{3.4}Zn_{4.3}-A$ and $Tl_{5.5}Zn_{3.25}-A$ were prepared by flow method using exchange solutions in which mole ratios of $TlNO_3$,/TEX> and $Zn(NO_3)_2$ were 1:50 and 1:1, respectively, with total concentration of 0.05 M. The structures of the dehydrated $Tl_{3.4}Zn_{4.3}-A$ and $Tl_{5.5}Zn_{3.25}-A$ were refined to yield the final error indices $R_1$ = 0.075 and $R_2$ = 0.075 with 236 reflections, and $R_1$ = 0.057 and $R_2$ = 0.064 with 202 reflections, respectively, for which I > 3$\sigma$(I). Both structures indicate that Zn(II) ions are coordinated by three framework oxygens: the Zn(II) to O(3) distances are 2.08(1) ${\AA}$ for $Tl_{3.4}Zn_{4.3}-A$ and 2.07(1) ${\AA}$ for $Tl_{5.5}Zn_{3.25}-A$, respectively. In each structure, the angle subtended at Zn(II), O(3)-Zn(II)-O(3) is 119.9(3)$^{\circ}$ for $Tl_{3.4}Zn_{4.3}-A$, and 120.0(3)$^{\circ}$ for $Tl_{5.5}Zn_{3.25}-A$, respectively, close to the idealized trigonal-planar value. Zn(II) ions prefer to 6-ring sites. $Tl^+$ ions do not have any preference to a particular site but occupy simultaneously both at the 6-ring sites and 8-ring sites.

습식합성에 의한 Mn-Zn Ferrite의 생성반응에 관한 연구 (Formation Reaction of Mn-Zn Ferrite by Wet Process)

  • 이경희;이병하;허원도;황우연
    • 한국세라믹학회지
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    • 제30권1호
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    • pp.25-33
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    • 1993
  • Formation reaction of Mn-Zn ferrite depending on various synthetic conditions of wet process was investigated using FeCl2.nH2O(n≒4), MnCl2.4H2O, ZnCl2 as starting materials. A stable intermediate precipitate was formed by the addition of H2O2. And the precipitate was hard to transform to spinel phase of Mn-Zn Fe2O4. Single phase of Mn-Zn Fe2O4 spinel was obtained above 8$0^{\circ}C$ reaction temperature. The powder had spherical particle shape and 0.02~0.05${\mu}{\textrm}{m}$ particle size. Fe(OH)2 solid solution, -FeO(OH) solid solution, -FeOOH, Mn-Zn Fe2O4 spinel were formed with air flow rate 180$\ell$/hr. However, single phase of Mn-Zn Fe2O4 spinel with cubic particle shape and 0.1~0.2${\mu}{\textrm}{m}$ particle size was formed with synthetic conditions of 8$0^{\circ}C$ and 90 munutes. The particle shape of the -FeOOH was needle-like.

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$Zn^{+2}$에 의한 Tolaasin의 용혈활성 저해효과 (Inhibitory Effect of $Zn^{+2}$ on Tolaasin-induced Hemolysis)

  • 조광현;김성태;김영기
    • Applied Biological Chemistry
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    • 제49권4호
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    • pp.281-286
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    • 2006
  • Tolaasin은 Pseudomonas tolaasii에 의해 생성된 분자량 1,985 Da의 펩티드로서 재배버섯에 갈반병을 유발하는 원인 독소이다. Tolaasin은 곰팡이, 세균, 식물세포 뿐만 아니라 적혈구의 원형질막에 이온통로를 형성하여 세포를 파괴한다. $Zn^{+2}$는 tolaasin의 활성을 저해함이 알려졌으나, 자세한 기작은 밝혀지지 않았다. 따라서, 본 연구에서는 tolaasin의 이온통로 형성에 대한 분자기작을 밝히기 위하여, 적혈구 용혈현상에 대한 $Zn^{+2}$의 저해효과를 조사하였다. $Zn^{+2}$$Cd^{+2}$은 tolaasin의 용혈활성을 농도의존적으로 저해하였으며, Ki 값은 각각 170 ${\mu}M$과 20 mM 이었다. $Zn^{+2}$의 저해효과는 EDTA의 첨가로 제거되어 $Zn^{+2}$의 효과가 가역적임을 보여준다. 한편, tolaasin과 함께 삼투억제제인 PEG 2000을 가하였을 때, 용혈현상은 나타나지 않았다. 적혈구를 원심분리로 회수하고 PEG 2000을 제거한 후, 신선한 반응용액에 현탁하였을 때, 용혈현상은 즉시 관측되었다. 그러나, 이때에도 $Zn^{+2}$가 존재시에는 용혈현상이 억제되었으며, 이것은 삼투억제제의 처리중에 이미 이온통로가 만들어졌음을 의미한다. 이러한 결과는 $Zn^{+2}$가 tolaasin의 세포막 결합 및 이온통로 형성에는 영향이 적으며, 형성된 이온통로의 활성을 저해함을 보인다.

반회분식 반응을 이용한 단분산 ZnO 나노 입자의 제조 및 입자의 크기와 입도 분포에 영향을 미치는 HPC의 작용 (Synthesis of Monodisperse ZnO Nanoparticles Using Semi-batch Reactor and Effects of HPC Affecting Particle Size and Particle Size Distribution)

  • 노승윤;김기도;송건용;김희택
    • 공업화학
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    • 제17권3호
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    • pp.274-279
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    • 2006
  • 해중합 촉매인 zinc acetate ($C_{4}H_{6}O_{4}Zn{\cdot}2H_{2}O{\cdot}0.2\;mol$)와 lithuium hydroxide $H_{2}O$ ($LiOH{\cdot}H_{2}O{\cdot}0.14\;mol$)를 용매인 ethyl alcohol (99.9%)에 용해시킨 후 분산제인 hydroxypropyl cellulose (HPC)를 첨가하여 균일하게 분산된 ZnO (산화아연) 콜로이드 용액을 졸-겔법을 이용하여 합성하였다. ZnO 입자들의 크기와 모양은 분산제인 HPC에 의해 결정되었다. 또한 나노 크기의 ZnO 입자들은 zinc-2-ethylhexagonate를 기초로 한 침천법을 이용하여 얻었다. 이렇게 얻어진 ZnO 분말을 DLS, XRD, FE-SEM, 그리고 UV-Vis를 통하여 특성 분석을 하였다. 그 결과, 산화아연 분말은 자기조립 반응으로 균일하고 육방정계 모양의 구조를 가지는 것을 볼 수 있었다. 또 평균 입자 크기는 거의 40 nm이고 균일하게 분산되었다.

뇌임펄스전류에 의한 ZnO 피뢰기의 열화특성 (Degradation Properties of ZnO Surge Arresters Due to Lightning Impulse Currents)

  • 이수봉;이복희
    • 조명전기설비학회논문지
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    • 제23권4호
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    • pp.79-85
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    • 2009
  • 이 논문은 피임펄스전류의 입사에 따른 ZnO 피뢰기의 열화 특성에 대하여 기술하였다. 뇌서지에 의한 ZnO 피뢰기의 열화특성을 분석하기 위해 시료 ZnO 피뢰기에 8/20[${\mu}s$], 2.5[kA]의 표준뇌임펄스전류를 인가하였다. 뇌임펄스전류를 인가한 것과 인가하지 않은 ZnO 피뢰기에 흐르는 상용주파수 AC 및 DC 누설전류를 측정하였다. 그 결과 임펄스전류의 인가횟수가 증가함에 따라 누설전류는 증가하였고 AC전압에서 누설전류의 비 대칭성은 뚜렷하게 나타났다. 뇌임펄스전류를 인가하지 않은 ZnO 피뢰기의 ZnO 입자는 균일한데 반해 뇌임펄스전류를 인가한 ZnO 피뢰기의 ZnO 입자는 불균일하게 변형되었다. 또한 뇌임펄스전류 인가에 따른 $Bi_2O_3$의 감소가 입계층의 결핍을 발생시키며 입계층의 결핍에 의한 전류의 집중이 ZnO 피뢰기 소자의 비선형 특성의 열화에 대한 중요한 요인으로 작용한 것으로 밝혀졌다.

Mg-Zn-(Zr) 합금의 미세조직과 결정립의 안정성 (Microstructures and Grain Stabilities of Mg-Zn-(Zr) Alloys)

  • 전중환
    • 열처리공학회지
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    • 제23권6호
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    • pp.309-314
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    • 2010
  • Microstructures and grain growth behaviors at elevated temperatures have been investigated for extruded Mg-2%Zn and Mg-2%Zn-0.3%Zr alloys, in order to clarify the role of Zr in grain stability of Mg-Zn alloy. The grain size of Zr-free alloy increased continuously with an increase in annealing temperature, when isochronally annealed for 60 min from 573 to 723K, while the grains of the Zr-containing alloy were relatively stable up to 723 K. The activation energies for grain growth ($E_g$) between 573 and 723 K were calculated as 77.8 and 118.6 kJ/mole for the Mg-2%Zn and Mg-2%Zn-0.3%Zr alloys, respectively, which indicates that grains in the Zr-added alloy possess higher thermal stabilities at elevated temperatures. TEM observations on the annealed Mg-2%Zn and Mg-2%Zn-0.3%Zr alloys revealed that enhanced grain stability resulting from Zr addition into Mg-Zn alloy would be ascribed to the restriction of grain growth by stable Zn-Zr nano-precipitates distributed in the microstructure.