• 제목/요약/키워드: ${ZnCo_2}{O_4}$spinel

검색결과 41건 처리시간 0.042초

Sol-gel 법에 의한 Co-Zn Ferrite 박막의 제호와 자기 특성에 관한 연구 (Fabrication and magnetic properties of Co-Zn ferrite thin films prepared by a sol-gel process)

  • 김철성;안성용;이승화;양계준;류연국
    • 한국자기학회지
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    • 제11권4호
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    • pp.168-172
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    • 2001
  • Sol-gel법을 이용하여 Co$_{0.9}$Zn$_{0.1}$Fe$_2$O$_4$ 박막을 제조하였다. 성장한 박막의 구조 및 자기적 성질에 관하여 x선 회절분석기 (XRD), atomic force microscopy(AFM) 및 Auger electron spectroscopy(AES), 진동시료자화측정기 (VSM)을 이용하였다. Co-Zn 페라이트 박막의 경우, 400 $^{\circ}C$ 이상의 열처리 온도에서 단일상의 spinel 구조만을 가지고 있으며, 아무런 방향성이 없이 성장함을 나타내고 있다. 열처리 온도가 600 $^{\circ}C$ 이하에서 성장된 박막 표면의 거칠기는 3 nm 이하였으며, 형성된 입자의 크기는 약 40nm이하임을 알 수 있었다. 또한, 40$0^{\circ}C$에서 열처리한 경우 기판에서 Si이 Co-Zn 페라이트 박막내로 확산이 거의 나타나지 않았으나, 870 $^{\circ}C$에서 열처리한 경우 계면에서 기판과 박막의 상호 확산을 확인할 수 있었다. 제작한 박막은 외부 자기장의 방향과는 무관한 등방성의 자기적 특성을 보이며, 최대 보자력은 600 $^{\circ}C$에선 열처리한 자성박막이 약 1,900 Oe을 가짐을 알 수 있었다.있었다.

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공침법으로 제조한 NiCoZn Ferrite의 조성 및 소결온도에 따른 자기적 특성 및 전파흡수특성 (The Magnetic Properties with the Variation of Sintering Temperature and Microwave Absorbing Characteristics of NiCoZn Ferrite Composite Prepared by Co-precipitation Method)

  • 김문석;민의홍;고재귀
    • 한국자기학회지
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    • 제18권3호
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    • pp.120-125
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    • 2008
  • 여러 가지 다른 조성의 NiCoZn ferrite를 공침법으로 제조한 후 소결온도를 변화시켜 NiCoZn ferrite 미분말을 제조하였다. 제조된 미분말의 미세조직, 결정구조 및 전기적 특성을 분석하였고, 복합형 NiCoZn ferrite 전파흡수체를 제작하여 전파흡수 특성을 분석하였다. 합성한 미분말들은 전형적인 NiCoZn spinel 구조를 지니고 있음을 확인하였고, 입자 크기가 평균 40 nm의 나노분말을 가짐을 알 수 있었다. NiCoZn ferrite를 소결온도를 달리하여 제조한 결과, $1250^{\circ}C$에서 소결된 NiCoZn ferrite가 불순물이 적고 초투자율 및 Q 값이 가장 낮게 나왔다. 또한 S-parameter를 측정하여 반사 감쇠율을 계산한 결과 두께 2 mm인 $(Ni_{0.4}Co_{0.1}Zn_{0.5})Fe_2O_4$ 조성의 시트형 전파흡수체는 6 GHz의 주파수 대역에서 -3.1 dB의 반사 감쇠율을 보여주었다. 이런 측정 결과 6 GHz 이상의 고주파 영역에서 복합 ferrite 전파흡수체로서 응용이 가능할 것으로 사료된다.

Zn1-xFexO의 뫼스바우어 분광학적 연구 (The Study on Mössbauer Spectroscopy of Zn1-xFexO)

  • 김성진;이상률;박철수;김응찬;조영걸;김동호
    • 한국자기학회지
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    • 제18권2호
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    • pp.75-78
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    • 2008
  • $AB_2X_4$((A, B)=Transition Metal, X=O, S, Se) 물질에서의 8면체 자리의 이온 거동과 4면체 자리 이온과의 상호작용에 대하여 많은 연구가 이루어지고 있다. 본 연구에서는 4면체 자리에 비자성 이온인 Zn 이온을 치환함에 따른 자기구조의 변화를 관측하여 8면체 자리의 자기구조를 분석하고자 하였다. Cr이온의 일부를 Fe로 치환한 $[Co_{0.9}Zn_{0.1}]_A[Cr_{1.98}{^{57}Fe_{0.02}}]_BO_4$의 닐온도($T_N$는 90K로 $CoCr_{1.98}{^{57}Fe_{0.02}}O_4$ 비하여 감소하였다. 4.2 K에서의 초미세자기장값의 분석결과, 초미세자기장값의 작은 차이를 보이는 잘 분리된 2-set 형태로 나타났으며, $CoCr_{1.98}{^{57}Fe_{0.02}}O_4$의 초미세자기장값은 488, 478 kOe 인데 반하여, $Co_{0.9}Zn_{0.1}Cr_{1.98}{^{57}Fe_{0.02}}O_4$의 초미세자기장값은 $B_1=486$, $B_2=468$ kOe으로 나타났다. Zn 이온의 치환에 따라서 초미세자기장값의 변화를 알 수 있었다. 이러한 결과로 인하여, Zn 이온이 x=0.1 치환된 물질의 경우, 스핀재정렬온도($T_S$)가 18K으로 감소함을 알 수 있다.

Sb/Bi비가 ZnO-Bi2O3-Sb2O3-Mn3O4-Co3O4 바리스터의 소결과 입계 특성에 미치는 영향 (Effect of Sb/Bi Ratio on Sintering and Grain Boundary Properties of ZnO-Bi2O3-Sb2O3-Mn3O4-Co3O4 Varistor)

  • 홍연우;이영진;김세기;김진호
    • 한국전기전자재료학회논문지
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    • 제25권11호
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    • pp.878-885
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    • 2012
  • In this study we aims to examine the co-doping effects of 1/3 mol% $Mn_3O_4+Co_3O_4$ (1:1) on the reaction, microstructure, and electrical properties such as the bulk defects and grain boundary properties of $ZnO-Bi_2O_3-Sb_2O_3$ (ZBS; Sb/Bi=0.5, 1.0, and 2.0) varistors. The sintering and electrical properties of Mn,Co-doped ZBS, ZBS(MCo) varistors were controlled by Sb/Bi ratio. Pyrochlore ($Zn_2Bi_3Sb_3O_{14}$) was decomposed and promoted densification at lower temperature on heating in Sb/Bi=1.0 by Mn rather than Co. Pyrochlore on cooling was reproduced in all systems however, spinel (${\alpha}$- or ${\beta}$-polymorph) did not formed in Sb/Bi=0.5. More homogeneous microstructure was obtained in $Sb/Bi{\geq}1.0$ In ZBS(MCo), the varistor characteristics were improved drastically (non-linear coefficient, ${\alpha}$=30~49), and seemed to form $Zn_i^{..}$(0.17 eV) and $V_o^{\bullet}$(0.33 eV) as dominant defects. From impedance and modulus spectroscopy (IS & MS), the grain boundaries have divided into two types, i.e. the one is tentatively assign to $ZnO/Bi_2O_3(Mn,Co)/ZnO$ (0.47 eV) and the other ZnO/ZnO (0.80~0.89 eV) homojunctions.

Spinel Pigment의 생성반응에 관한 연구 (A Study on the Formation of Spinel Pigment(Green Pigment based on Magnesium-Chrome))

  • 이응상;박철원;황성연
    • 한국세라믹학회지
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    • 제12권1호
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    • pp.29-36
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    • 1975
  • This study was conducted to research the formation, color development and application for colored glazes of the spinel solid solutions of the green pigment. On specimens prepared by calcining the oxide and basic carbonate mixture at 1250℃ for 1.5 hour, the x-ray analysis, measurement of reflectance and the test of their stabiality as a glaze pigment were carried out. The results are summarized as follows 1) Each sample is composed of single spinel and not of mixture of spinel. 2) Formation of continuous soild solution, except for a few instances, pertaining to Vegard's law was confirmed by means of the x-ray analysis. 3) The more difference between absorption and reflectance lies, the lighter colors are. When the absorption occurs at the high-reflectance, the excitation purity becomes low. On the contrary when the absorption takes place at the low-reflectance, the excitation purity becomes low. On the contrary when the absorption takes place at the low-reflectance, the excitation purity is higher. 4) Colors obtained in the CdO-MgO-Cr2O3-Al2O3 system, as the amounts of Al3+ increased, change from green through brown to pink, and the absorption peak shifts towards violet region. 5) An increase in Co2+ in the CoO-MgO-Cr2O3-Al2O3 system, changes the color from blue green to dark blue. The excitation purity is higher, and the absorption peak shifts toward regions. 6) Colors are green in the NiO-MgO-Cr2O3 and CdO-MgO-Cr2O3 systems in general, but in the ZnO-MgO-Cr2O3 system brillant hue is not obtained. 70 According to the results of the colored glaze test, the spinels turn outto be stable as brilliant glaze pigment in the calcium-magnesia glaze.

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귀금속 첨가에 의한 나노 (Ni, Zn)-페라이트의 $CO_2$분해 향상 (Improvement of $CO_2$Decomposition by Impregnating Noble Metals to Nano-size (Ni, Zn)-ferrites)

  • 김정식;안정률;강계명
    • 한국재료학회지
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    • 제11권10호
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    • pp.846-850
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    • 2001
  • In the present study, nano-size powders of ternary ferrites, $Ni_{0.5}Zn_{0.5}Fe_2O_4$, as the potential catalysts of $CO_2$decomposition, were prepared by the wet processing of hydrothermal synthesis and coprecipitation method, and the catalyzing effects of impregnation of the noble metals, Pt and Pd, onto $Ni_{0.5}Zn_{0.5}Fe_2O_4$for the $CO_2$decomposition were investigated. XRD results of the synthesized ferrites showed a typical spinel structure of ferrite and the particle size was very small as about 6~10 nm. BET surface area of the ternary ferrites was not affected by the impregnation of Pt and Pd. The reactivity of the $CO_2$decomposition to carbon was improved by the impregnation of the noble metals of Pd and Pt. The effect of Pd-impregnation on the $CO_2$decomposition rate was higher than Pt-impregnation.

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Ni0.5Zn0.4Cu0.1Fe2O4 Complex Ferrite Nanoparticles Synthesized by Chemical Coprecipitation Predicted by Thermodynamic Modeling

  • Kang, Bo-Sun;Park, Joo-Seok;Ahn, Jong-Pil;Kim, Kwang-Hyun;Tae, Ki-Sik;Lee, Hyun-Ju;Kim, Do-Kyung
    • 한국세라믹학회지
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    • 제50권3호
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    • pp.231-237
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    • 2013
  • Thermodynamic modeling of the $Ni_{0.5}Zn_{0.4}Cu_{0.1}Fe_2O_4$ complex ferrite system has been adopted as a rational approach to establish routes to better synthesis conditions for pure phase $Ni_{0.5}Zn_{0.4}Cu_{0.1}Fe_2O_4$ complex ferrite. Quantitative analysis of the different reaction equilibria involved in the precipitation of $Ni_{0.5}Zn_{0.4}Cu_{0.1}Fe_2O_4$ from aqueous solutions has been used to determine the optimum synthesis conditions. The spinel ferrites, such as magnetite and substitutes for magnetite, with the general formula $MFe_2O_4$, where M= $Fe^{2+}$, $Co^{2+}$, and $Ni^{2+}$ are prepared by coprecipitation of $Fe^{3+}$ and $M^{2+}$ ions with a stoichiometry of $M^{2+}/Fe^{3+}$= 0.5. The average particle size of the as synthesized $Ni_{0.5}Zn_{0.4}Cu_{0.1}Fe_2O_4$, measured by transmission electron microscopy (TEM), is 14.2 nm, with a standard deviation of 3.5 nm the size when calculated using X-ray diffraction (XRD) is 16 nm. When $Ni_{0.5}Zn_{0.4}Cu_{0.1}Fe_2O_4$ ferrite is annealed at elevated temperature, larger grains are formed by the necking and mass transport between the $Ni_{0.5}Zn_{0.4}Cu_{0.1}Fe_2O_4$ ferrite nanoparticles. Thus, the grain sizes of the $Ni_{0.5}Zn_{0.4}Cu_{0.1}Fe_2O_4$ gradually increase as heat treatment temperature increases. Based on the results of Thermogravimetric Analysis (TGA) and Differential Scanning Calorimeter (DSC) analysis, it is found that the hydroxyl groups on the surface of the as synthesized ferrite nanoparticles finally decompose to $Ni_{0.5}Zn_{0.4}Cu_{0.1}Fe_2O_4$ crystal with heat treatment. The results of XRD and TEM confirmed the nanoscale dimensions and spinel structure of the samples.

Sb/Bi비에 따른 5원계 바리스터의 소결거동 및 전기적 특성(I) : ZnO-Bi2O3-Sb2O3-Mn3O4-Cr2O3 (Sintering and Electrical Properties According to Sb/Bi Ratio(I) : ZnO-Bi2O3-Sb2O3-Mn3O4-Cr2O3 Varistor)

  • 홍연우;이영진;김세기;김진호
    • 한국재료학회지
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    • 제22권12호
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    • pp.675-681
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    • 2012
  • We aimed to examine the co-doping effects of 1/6 mol% $Mn_3O_4$ and 1/4 mol% $Cr_2O_3$ (Mn:Cr = 1:1) on the reaction, microstructure, and electrical properties, such as the bulk defects and grain boundary properties, of ZnO-$Bi_2O_3-Sb_2O_3$ (ZBS; Sb/Bi = 0.5, 1.0, and 2.0) varistors. The sintering and electrical properties of Mn,Cr-doped ZBS, ZBS(MnCr) varistors were controlled using the Sb/Bi ratio. Pyrochlore ($Zn_2Bi_3Sb_3O_{14}$), ${\alpha}$-spinel ($Zn_7Sb_2O_{12}$), and ${\delta}-Bi_2O_3$ (also ${\beta}-Bi_2O_3$ at Sb/Bi ${\leq}$ 1.0) were detected for all of the systems. Mn and Cr are involved in the development of each phase. Pyrochlore was decomposed and promoted densification at lower temperature on heating in Sb/Bi = 1.0 system by Mn rather than Cr doping. A more homogeneous microstructure was obtained in all systems affected by ${\alpha}$-spinel. In ZBS(MnCr), the varistor characteristics were improved dramatically (non-linear coefficient, ${\alpha}$ = 40~78), and seemed to form ${V_o}^{\cdot}$(0.33 eV) as a dominant defect. From impedance and modulus spectroscopy, the grain boundaries can be seen to have divided into two types, i.e. one is tentatively assigned to ZnO/$Bi_2O_3$ (Mn,Cr)/ZnO (0.64~1.1 eV) and the other is assigned to the ZnO/ZnO (1.0~1.3 eV) homojunction.

수열합성법에 의한(Ni, Zn)-Ferrites의 초미세분말 합성공정 및 $CO_2$분해 특성 연구 (Study on The Synthesis of The Ultra-Fine (Ni, Zn)-ferrite by The Hydrothermal Method and its $CO_2$ Decomposition)

  • 김정식;안정률;류호진
    • 한국재료학회지
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    • 제10권3호
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    • pp.223-226
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    • 2000
  • 산소 결핍 페라이트 (oxygen deficient ferrites, ODF) $MeFe_2O_{4-\delta}$는 약 $300^{\circ}C$의 낮은 온도에서 $CO_2$를 C와 $O_2$로 분해한다. 본 연구에서는 $(Ni_x,\;Zn_{1-x}Fe_2_4$ 초미세 페라이트 분말을 수열합성법으로 제조하여 $CO_2$ 분해특성을 살펴보았다. 제조된 페라이트는 XRD 분석 결과, 페라이트의 전형적인 스피넬 구조를 보여주고 있으며, ICP-AES, EDS 정량분석에 의하여 초기 혼합 조성비와 거의 동일한 조성비로 합성되었음을 알 수 있었다. 제조된 (Ni, Zn)-ferrites 분말의 BET 비표면적은 약 $110\textrm{mg}^2$/g$ 이상의 큰 값으로 나타났으며, 입자크기는 약 5~10nm로 매우 작았다. 산소결핍 페라이트 $(Ni_x,\;Zn_{1-x})Fe_2O_{4-{$\delta}}$$CO_2$ 분해 효율은 조성에 따라 큰 차이를 보이지 않았으며 3원계 (Ni, Zn)-ferrite가 Ni-ferrite보다 더 높았다.

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