• 제목/요약/키워드: Mn-Ni-Co

검색결과 693건 처리시간 0.037초

수직자기이방성을 갖는 [Pd/Co]5/X/FeMn 다층박막에서 삽입층 물질과 두께에 따른 교환바이어스와 보자력의 의존성 (Dependence of Coercivity and Exchange Bias by Thickness and Materials of Inserted Layer in [Pd/Co]5/X/FeMn Multilayer with Out-of-plane Magnetic Anisotropy)

  • 허장;박동훈;강왕손;지상훈;이기암
    • 한국자기학회지
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    • 제18권5호
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    • pp.185-189
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    • 2008
  • 수직자기이방성을 갖는 [Pd(0.6 nm)/$Co(0.2)]_5$/FeMn(10) 다층박막 구조를 이용하여 삽입층 물질과 각 물질의 두께 증가에 따른 보자력(coercivity, $H_c$)과 교환력(exchange bias, $H_{ex}$)의 변화를 관찰하였다. $[Pd(0.6 nm)/Co(0.2)]_4$/Pd(0.6)/NiFe(t)/FeMn(10) 구조에서 Co 대신에 NiFe를 삽입하였을 때 0.78 nm와 1.28 nm에서 360 Oe의 교환바이어스를 얻었다. [Pd(0.6 nm)/$Co(0.2)]_5$/FeMn(10) 다층박막 구조에서 Co/FeMn 사이 계면에 $Co_8Fe_2$$Co_9Fe_1$ 물질을 삽입하여 두께 증가에 따라 $Co_8Fe_2$의 경우 0.68 nm에서 30 Oe 증가한 380 Oe의 교환바이어스를 얻었다. $Co_9Fe_1$ 경우 두께 0.52 nm에서 약 200 Oe 증가한 580 Oe 가장 큰 교환바이어스를 얻었다.

리튬이온전지용 정극활물질 LiNi0.4Mn0.3Co0.3O2의 전기화학적 특성 (Electrochemical Properties of LiNi0.4Mn0.3Co0.3O2 Cathode Material for Lithium Ion Battery)

  • 공명철;김현수;김기택;구할본
    • 한국전기전자재료학회논문지
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    • 제19권7호
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    • pp.650-654
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    • 2006
  • [ $LiNi_{0.4}Mn_{0.3}Co_{0.3}O_2$ ] cathode material was synthesized by a mixed hydroxide method. Structural characterization was carried out using X-ray diffraction studies. Electrochemical studies were performed by assembling 2032 coin cells with lithium metal as an anode. DSC (Differential scanning calorimetry) data showed that exothermic reactions of $LiNi_{0.4}Mn_{0.3}Co_{0.3}O_2$ charged to 4.3 V versus Li started at high temperatures$(280\sim390^{\circ}C)$. The cell of $LiNi_{0.4}Mn_{0.3}Co_{0.3}O_2$ mixed cathode delivered a discharge capacity of 150 mAh/g at a 0.2 C rate. The capacity of the cell decreased with the current rate and a useful capacity of 134 mAh/g was obtained at a 2 C rate. The reversible capacity after 100th cycles was 126 mAh/g when a cell was cycled at a current rate of 0.5 C in $2.8\sim4.3V$.

서미스터용 Mn-Co-Ni-Fe계 산화물의 조성에 따른 전기저항특성 (Characteristics of Electrical Resistance in System Mn-Co-Ni-Fe oxide for Thermistor with various Compositions)

  • 김영민;임재석;임굉
    • 공학논문집
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    • 제5권1호
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    • pp.63-72
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    • 2004
  • Mn-Co-Ni 3성분계에 Fe의 첨가량을 변화시켜 따른 산화물 서미스터소결체(Mn-Co-Ni-Fe oxide)를 소성온도 1200~$1400^{\circ}C$에서 제조하여 전기저항특성을 조사한 결과, 결정상은 단일입방정 스피넬형 결정구조였고, 소성온도에 따른 전기전도도는 $1300^{\circ}C$에서 4시간 소결한 시미스터가 가장 높았다. 대체로 F-2를 제외하고는 Fe의 첨가량이 증가할 때 비저항은 증가하고 상대적으로 전기전도도는 감소한다. 특히 F-2의 조성에 있어서는 전기전도도가 1.4${\times}$$10^-3$${\ textohm}cm로 높았고 상대적으로 B정수는 2906K로 낮았다.

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High Exchange Coupling Field and Thermal Stability of Antiferromagnetic Alloy NiMn Spin Valve Films

  • Lee, N. I.;J. H. Yi;Lee, G. Y.;Kim, M. Y.;J. R. Rhee;Lee, S. S.;D. G. Hwang;Park, C. M.
    • Journal of Magnetics
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    • 제5권2호
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    • pp.50-54
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    • 2000
  • NiMn-pinned spin valve films consisting of a layered glass/NiFe/Co/Cu/Co/NiFe/NiMn/Ta stack were made by do magnetron sputtering. After deposition, the structure was annealed in a series of cycles each including three hours at $220^\circ C, 2\times10^{-6}$ Torr, in a field of 350 Oe, to create an ordered antiferromagnetic structure in the NiMn layer and produce a strong unidirectional pinning field in the pinned magnetic layer, Optimum spin valve properties were obtained after seven annealing cycles, or 21 hours at $220^\circ C$, and were : MR ratio 1%, exchange coupling field 620 Oe, and coercivity of pinned layer 250 Oe. The exchange coupling field remained constant up to an operating temperature of $175^\circ C$, and the blocking temperature was about $380^\circ C$.

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진해만 퇴적물중의 중금속 함량 (HEAVY METALS IN SEDIMENTS FROM JINHAE BAY, KOREA.)

  • 이수형;이광우
    • 한국해양학회지
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    • 제18권1호
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    • pp.49-54
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    • 1983
  • 진해만의 중금속 오염 현황 파악을 위하여 퇴적물중의 중금속 함량을 조사 하였다. 조사된 중금속은 Cd, Cr, Cu, Fe, Ni, Mn, Pb, Zn등 9가지 원소이며 모두 23개 조사점에서 시료를 채취하여 원자흡수 분광법에 의해 중금속 함량을 분석 하였다. 본 조사 결과로는 Cd, Cr, Cu, Pb, Zn 등의 함량은 마산만이 다른 해역 보다 월등히 높았으며 또 내만에서 외양으로 나갈수록 함량이 뚜렷하게 감소 하였으나 Co, Fe, Ni, Mn 등은 해역간에 별다른 농도 차이를 나타내지 않았다. 중금속의 통계학적 상관 관계를 보면 Cd, Cr, Cu, Pb, Zn group과 co, Fe, Ni group 으로 나뉘어져 각 group 내에서중금속 상호간에 유의성 있는 상관 관계를 나타내었으나 group 간에는 상관 관계를 보이지 않았다.

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Mn-Ni-Co계 NTC thermistor를 이용한 연료 부족 감지용 센서 (A Fuel shortage detected sensor using NTC thermistor of Mn-Ni-Co system)

  • 윤중락;김두영;송광호;이헌용
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1995년도 추계학술대회 논문집
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    • pp.347-350
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    • 1995
  • In this paper, we fabricated fuel shortage detecting sensor, utilizing NTC thermistor concerned with Mn-Ni-Co system. We would be obtained B constant value of 1930∼2080 and resistivity 387∼430(ohm-cm) additive Bi$_2$O$_3$0∼0.5 wt% to Mn$_3$O$_4$:9wt%, Co$_3$O$_4$:61wt%, NiO:28wt% under 1150∼1250$^{\circ}C$ of sintering temperature. In sensor, we obtained characteristics, which we want, in resistance range 850∼l150$\Omega$, B constant 2000${\pm}$5%. we can see 15 multiplied differences between gasoline and heat dissipation coefficient of air condition.

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CoO가 첨가되지 않은 스피넬계 흑색안료의 합성 (Synthesis of Cobalt Oxide Free Black Color Spinel Pigment)

  • 김준호;이성호;서만철;이병하
    • 한국세라믹학회지
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    • 제44권11호
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    • pp.639-644
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    • 2007
  • Spinel pigments, developing black color in high temperature glazes at oxidation or reduction atmosphere, without CoO because of its high price were synthesized by solid solution method. Ten mixed compositions consisted of NiO, MnO, $Fe_2O_3 and $Mn_2O_3$ were fired at $1250^{\circ}C$ for 1h. The resulting pigments were characterized by using XRD, FT-IR, SEM and UV-vis spectrometer. Structure of the pigments are spinel and particles' shape are spherical or cubic. Glazed tiles containing 5 wt% pigments were fired at $1260^{\circ}C$ and $1240^{\circ}C$ in reduction atmosphere. Color in glazes were analyzed by UV-vis spectrometer. Colors of NiO 0.875 MnO $0.125{\cdot}Fe_2O_3$ $0.4875{\cdot}Cr_2O_3$ $0.50{\cdot}Mn_2O_3$ 0.0125 mole% and NiO 0.875 MnO $0.125{\cdot}Fe_2O_3$ $0.3875{\cdot}Cr_2O_3$ $0.50{\cdot}Mn_2O_3$ 0.1125 mole% in lime glaze showed black in oxidation, in reduction NiO 0.875 MnO $0.125{\cdot}Fe_2O_3$ $0.4875{\cdot}Cr_2O_3$ $0.50{\cdot}Mn_2O_3$ 0.0125 mole% and NiO 0.875 MnO $0.125{\cdot}Fe_2O_3$ $0.4375{\cdot}Cr_2O_3$ $0.55{\cdot}Mn_2O_3$ 0.0125 mole% showed black. In case of lime-barium glaze, NiO 0.875 MnO $0.125{\cdot}Fe_2O_3$ $0.3875{\cdot}Cr_2O_3$ $0.50{\cdot}Mn_2O_3$ 0.1125 mole%, NiO 0.975 MnO $0.075{\cdot}Fe_2O_3$ $0.4375{\cdot}Cr_2O_3$ $0.50{\cdot}Mn_2O_3$ 0.0625 mole% and NiO 0.925 MnO $0.075{\cdot}Fe_2O_3$ $0.4375{\cdot}Cr_2O_3$ $0.50{\cdot}Mn_2O_3$ 0.0625 mole% showed black color in oxidation and NiO 0.875 MnO $0.125{\cdot}Fe_2O_3$ $0.3875{\cdot}Cr_2O_3$ $0.50{\cdot}Mn_2O_3$ 0.1125 mole%, NiO 0.925 MnO $0.075{\cdot}Fe_2O_3$ $0.4375{\cdot}Cr_2O_3$ $0.50{\cdot}Mn_2O_3$ 0.0625 mole% and NiO 0.725 MnO $0.275{\cdot}Fe_2O_3$ $0.4375{\cdot}Cr_2O_3$ $0.50{\cdot}Mn_2O_3$ 0.0625 mole% showed black one in reduction.