• Title/Summary/Keyword: 공침법

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Study on the reducibility of substituted $LaFeO_3$ (치환된 $LaFeO_3$의 환원반응성에 대한 연구)

  • Jeon, Hyun-Pyo;Lee, Sang-Beom
    • The Journal of Natural Sciences
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    • v.15 no.1
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    • pp.35-46
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    • 2005
  • $LaFeO_3$ and substituted $LaFeO_3$ mixed oxides were prepared by Citrate and Cyanide method in air $850^{\circ}C$/24h. These oxides of orthorhombic perovskite were characterized by XRD and IR, but substituted $LaFeO_3$ with 0.5mol Cu at B site was not obtained single phase. Also, reduction reaction of un-substituted $LaFeO_3.17$ were two steps but each site substituted oxides were three steps reactions. These means that new reduction step of each site substituted oxides were atributed tot dopant.

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Characteristics of Phosphate Adsorption using Prepared Magnetic Iron Oxide (MIO) by Co-precipitation Method in Water (공침법에 의해 제조된 Magnetic Iron Oxide (MIO)를 이용한 수중 인 흡착 특성)

  • Lee, Won-Hee;Chung, Jinwook;Kim, Jong-Oh
    • Journal of Korean Society of Water and Wastewater
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    • v.29 no.6
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    • pp.609-615
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    • 2015
  • This study was carried out for characterization of MIO synthesized in our laboratory by co-precipitation method and applied isotherm and kinetic models for adsorption properties. XRD analysis were conducted to find crystal structure of synthesized MIO. Further SEM and XPS analysis was performed before and after phosphate adsorption, and BET analysis for surface characterization. Phosphate stock solution was prepared by KH2PO4 for characterization of phosphate adsorption, and batch experiment was conducted using 50 ml conical tube. Langmuir and Freundlich models were applied based on adsorption equilibrium test of MIO by initial phosphate solution. Pseudo first order and pseudo second order models were applied for interpretation of kinetic model by temperature. Surface area and pore size of MIO were found $89.6m^2/g$ and 16 nm respectively. And, the determination coefficient ($R^2$) value of Langmuir model was 0.9779, which was comparatively higher than that of Freundlich isotherm model 0.9340.

Synthesis and Properties of Magnetite for Ferrofluid (자성유체용 마그네타이트의 합성 및 특성)

  • Baek, In-Ho;Jeong, Noh-Hee
    • Journal of the Korean Applied Science and Technology
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    • v.29 no.1
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    • pp.63-70
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    • 2012
  • Magnetite in the use of magnetic fluid seal was synthesized by coprecipitation method. Mean particle size of magnetite was measured about 12 nm by using dynamic light scattering(DLS). As a result of XRD test, along with the $NH_4OH$ concentration was increased, the crystallinity of magnetite was increased. The zeta potential of dispersed ferrofluid in water was measured in the range from -49.3 mV to -26.2 mV by DLS. The shape of magnetite particle was sphere form, and the spiking effect of aqueous and oily ferrofulid was confirmed.

The Effects of Additions of In & Sb on Resistivity & Sensitivity in Tin Oxide Gas Sensors (In과 Sb의 첨가가 Tin Oxide 가스센서에서 Resistivity와 Sensitivity에 미치는 영향)

  • Son, Y.M.;Han, S.D.;Kim, J.W.;Sim, K.S.
    • Journal of Sensor Science and Technology
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    • v.1 no.2
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    • pp.165-172
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    • 1992
  • To determine the effect of additions of trivalent and pentavalent ions on the electrical conductivity and sensing behaviour, indium and antimony were incorporated in tin oxide by the coprecipitation method. Antimony may be considered to enter the cassiterite structure as pentavalent ions, thermal energy could excite electrons from these ions into the conduction band. Similarly the indium ions would enter the lattice as $In^{3+}$ but could accept electrons from the valence band, thereby becoming monovalent or divalent. These phenomena, however, how the potential barrier existing $SnO_{2}$ by addition of two kinds of ions could influence on the sensing behaviour in comparison with their influence on the resistivity were observed.

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Synergistic Effects of Mo-V Based Mixed Oxide Catalysts for Acrolein Oxidation(I) (아크로레인 산화용 Mo-V 계 혼합산화물 촉매의 상승효과(I))

  • Na, Suk-Eun;Kim, Kyung-Hoon;Chung, Jong-Shik;Park, Dae-Won
    • Applied Chemistry for Engineering
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    • v.3 no.4
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    • pp.717-721
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    • 1992
  • Mechanical mixtures of vanadium molybdate and copper molybdate catalysts prepared by coprecipitation method, and those of $MoO_3$ and $V_2O_5$ were used to study the synergistic effects between each metal oxide for the selective oxidation of acrolein. The catalytic activity results revealed that the conversion of acrolein and yield of acrylic acid were increased with the mixture catalysts and it could be explained by a remote control mechanism. Thermal gravimetric analysis confirmed the evolution of lattice oxygen in the mixture catalysts.

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Synthesis of $BaTi_4O_9, Ba_2Ti_9O_{20}$ and $BaTi_5O_{11}$ Compounds by Coprecipitation Method and Their Electrical and Thermal Properties (공침법에 의한 $BaTi_4O_9, Ba_2Ti_9O_{20}$$BaTi_5O_{11}$화합물의 합성 및 그의 전기적, 열적 특성)

  • 김종옥;손우창;전성용;이경희;이병하
    • Journal of the Korean Ceramic Society
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    • v.31 no.9
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    • pp.1005-1011
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    • 1994
  • The three different composition of BaTi4O9, Ba2Ti9O20 and BaTi5O11 were prepared by coprecipitation process, and then the dielectric properties of these compounds were measured at low microwave frequencies. The powder showing high level of purity was synthesised by the coprecipition reaction of BaCl2 and TiCl4 where (NH4)2CO3 and NH4OH were used as a deflocculent. Followings are the result of this study: 1. The sintering temperature increased with increasing TiO2 content. 2. BaTi4O9 powder were synthesized as a single phase by this processing technique, but the resultant Ba2Ti9O20 and BaTi5O11 phase existed with Ba2Ti9O20 and BaTi5O11 phases. 3. Single phase BaTi4O9 showed high dielectric constant value of 35, high Q value of 8100.

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Adsorption of $N_2$ and Ar Gases on the Non-porous Perovskite Surfaces (무공성 Perovskite 표면에서의 $N_2$와 Ar 기체의 흡착)

  • Hyun-Woo Cho;Jung-Soo Kim;Kwang-Soon Lee;Woon-Sun Ahn
    • Journal of the Korean Chemical Society
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    • v.35 no.3
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    • pp.204-210
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    • 1991
  • Multilayer adsorption isotherms of nitrogen and argon on the perovskite-type mixed oxides, synthesized by a citrate coprecipitation method, are determined at the liquid nitrogen temperature using a gravimetric adsorption apparatus. The volume of the adsorbed gas are plotted against the statistical thickness of the adsorbed layer, calculated from several universal adsorption isotherms one after another. The t-method area obtained from this plot is compared with the BET area and finally the appropriateness of universal adsorption isotherms is then discussed on the basis of the plot.

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Properties of Al2O3-15v/o ZrO2(+3m/o Y2O3) Powder Prepared by Co-Precipitation Method (공침법으로 제조한 Al2O3-15v/o ZrO2(+3m/o Y2O3)계 분말의 특성)

  • 홍기곤;이홍림
    • Journal of the Korean Ceramic Society
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    • v.26 no.2
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    • pp.210-220
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    • 1989
  • The properties of the powder of Al2O3-15v/o ZrO2(+3m/o Y2O3) system prepared by co-precipitation method at the pH values of 7, 9, 10 and 11 were investigated. Al2(SO4)3.18H2O, ZrOCl2.8H2O and YCl3.6H2O were used as starting materials and NH4OH as a precipitation agent. Zirconium hydroxide decreased the specific surface area of aluminum hydroxide of AlOOH type, while increased the specific surface area of aluminum hydroxide of Al(OH)3 type, and formed co-network structure of Al-O-Zr type with the aluminum hydroxides. The rate of transition to $\alpha$-Al2O3 from co-precipitated materials occurred in the order of 7≒10, 9 and 11 of pH values. Al2O3 and ZrO2 interacted to bring about coupled grain growth, and the growth of ZrO2 crystallite size rapidly occurred within $\theta$-Al2O3 matrix. Segregation did not occur in the system Al2O3-15v/o ZrO2(+3m/o Y2O3) and Y2O3 acted as a stabilizer to ZrO2. The lattice strain of tetragonal ZrO2 was increased by the constraint effect of Al2O3 matrix.

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Preparation and Properties of Ni-Zn Ferrite by Coprecipitation Method (공침법에 의한 Ni-Zn Ferrite의 제조 및 물성연구)

  • Jung Goo Eun;Koh Jae Gui
    • Korean Journal of Materials Research
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    • v.14 no.5
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    • pp.338-342
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    • 2004
  • Ni-Zn ferrite powder was obtained by wet method that was to be coprecipitated the metal nitrates, Fe($NO_3$)$_3$$9H_2$O, Ni($NO_3$)$_2$$6H_2$O, Zn($NO_3$)$_2$$6H_2$O to make a high permeability material. The composition of the ferrite powder was $Fe_2$$O_3$ 52 mol%, NiO 14.4 mol%, ZnO 33.6 mol%. Ni-Zn ferrite powder was compounded by precipitating metal nitrates with NaOH in vessel at the synthetic temperature of $90^{\circ}C$ for 8 hours. Calcination temperature and sintering temperature were $700^{\circ}C$ and $1150^{\circ}C$$1250^{\circ}C$, respectively, for 2 hours. And the other ferrite powder was also prepared by the wet ball milling that was to be mixed the metal oxides as same as the above chemical composition. We studied the properties of the powder and the electromagnetic characteristics of the sintered cores obtained from there two different processes. Wet direct process produced smaller particle size with narrower distribution of the size and more purified ferrite whose sintered cores had high permeability and high magnetization.

Fine Powder Synthesis and It`s Sintering Characteristics of Gd2O3Doped CeO2 by the Oxalate Coprecipitation Method (Oxalate 공침법에 의한 Gd2O3Doped CeO2의 미분말 합성 및 그 소결특성)

  • 최광훈;박성용;이주진
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.15 no.1
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    • pp.46-55
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    • 2002
  • 10mo1% Gd$_2$O$_3$ doped CeO$_2$ fine powders were synthesized by the oxalate coprecipitation method. The characteristics and sintering behavior of fine powders were investigated. The oxalate precipitates had the specific surface area of 150$m^2$/g, and appeared to be fine and spherical primary particles with a size of approximately 5.5nm. The decomposition of the precipitates occurred from a temperature around 30$0^{\circ}C$ and it was completed below 40$0^{\circ}C$, resulted in the formation of the oxide. The calcination temperature of the fine powders was suitable at 77$0^{\circ}C$. By introducing fine powders washed with alcohol and ball-milling process after calcination, the sintered body was possible to attain the value of 97% of the theoretical density at low temperature of 130$0^{\circ}C$