• 제목/요약/키워드: superparamagnetic effect

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${Ni_{1-x}}{Cd_x}{FeAlO_4}$의 Mossbauer 효과 (M ssbauer effect of ${Ni_{1-x}}{Cd_x}{FeAlO_4}$)

  • 고정대;홍성락
    • 한국재료학회지
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    • 제11권10호
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    • pp.859-862
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    • 2001
  • The crystal structure and magnetic properties of the $Ni_{1-x} Cd_xFeAlO_4$(0$\leq$x$\leq$0.5) have been investigated by means of X-ray diffractometry and Mossbauer spectroscopy. The samples($0\leq$x$\leq$0.5) have been prepared by the ceramic sintering method. The X-ray diffraction pattern shows that the crystal structure of the samples is a cubic spinel type. The lattice constant has been found by extrapolation using the Nelson- Riley function and it increases slightly from $8.321{\AA}$ to $8.410{\AA}$ with Cd concentration. The Mossbauer spectra for x<0.4 show a superposition of two sextets and a paramagnetic doublet at room temperature. The cation distribution for x=0 was determined to be $[Fe_{0.75}Al_{0.25}]^A[NiFe_{0.25}Al_{0.75}^BO_4$. The superparamagnetic doublet for x< 0.4 seems to be due to A1 ion in tetrahedral site by the superparamagnetic clustering effect.

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Mg1-xZnxFeAlO4의 결정학적 구조 및 자기적 성질 (The Crystallographic Structure and Magnetic Properties of Mg1-xZnxFeAlO4)

  • 고정대;홍성락
    • 한국재료학회지
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    • 제15권6호
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    • pp.393-398
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    • 2005
  • The crystal structure and magnetic properties of the $Mg_{1-x}Zn_xFeAlO_4\;(0{\leq}x\leq1.0)$ have been investigated by means of x-ray diffractometry and $M\ddot{o}ssbauer$ spectroscopy. The samples$(0{\leq}x\leq1.0)$ have been prepared by the ceramic sintering method. The x-ray diffraction pattern shows that the crystal structure of the samples is a cubic spinel type. The lattice constant has been found by extrapolation using the Nelson-Riley function and it increases slightly from $8.3496\AA\;to\;8.4128\AA$ with Zn concentration. The $M\ddot{o}ssbauer$ spectra for x<0.4 show a superposition of two sextets ana a paramagnetic doublet at room temperature. The superparamagnetic doublet for x<0.4 seems to be due to Al ion in tetrahedral site by the superparamagnetic clustering effect.

반응조건에 따른 실록산으로 코팅된 마그네타이트 나노입자의 크기 및 분포 (Effect of Reaction Conditions on the Size and Size Distribution of Magnetite Nanoparticles Coated with Siloxane)

  • 윤관한;한창민;장용민
    • 폴리머
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    • 제28권2호
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    • pp.170-176
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    • 2004
  • 반응조건에 따른 실록산으로 코팅된 마그네타이트 나노입자의 크기 및 분포를 동적광산란을 이용하여 조사하였다. FT-IR로부터 마그네타이트의 표면에 히드록시기가 존재함을 확인하였고 이 히드록시기는 코팅된 실록산의 실란올과 수소결합을 이루고 있음이 확인되었다. 제조된 나노입자의 크기는 반응온도가 증가함에 따라 입자크기는 증가하였고 단량체 함량과 교반 속도의 증가에 따라서는 감소하였다. 입자 크기 분포는 반응조건에 따라서 약간의 변화는 있지만 전체적으로 14∼41nm 크기의 범위를 나타냈다. 제조된 마그네타이트의 자성특성은 vibrating sample magnetometer를 이용하여 초상자성임이 확인되었고 실록산으로 코팅된 나노입자 역시 초상자성을 나타냄을 확인하였다. 반응조건에 따라서는 반응온도가 증가할수록 포화자화강도는 증가하였고 단량체 함량과 교반 속도가 증가함에 따라서 포화자화강도가 감소하는 것을 나타내었다.

온열치료용 SiO2/Fe2O3 나노복합입자의 제조와 특성 (Synthesis and Characterization of SiO2/Fe2O3 Nanocomposite Particles for Hyperthermia)

  • 유지훈;이창우;이재성;좌용호
    • 한국재료학회지
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    • 제13권9호
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    • pp.613-618
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    • 2003
  • The magnetic heating effect of $SiO_2$coated $ \Upsilon-Fe_2$$O_3$nanocomposite particle due to magnetic relaxational loss of superparamagnetic regime was investigated by measuring the generated heat from nanocomposite particles in alternative applied magnetic fields. The commercial $ \Upsilon-Fe_2$$O_3$nanoparticles were coated by SiO$_2$in water solution with TEOS and the synthesized nanocomposite powders and its magnetic properties were characterized and compared with the raw$ \Upsilon-Fe_2$$O_3$nanoparticles. The 10∼30 nm sized $ \Upsilon-Fe_2$$O_3$. nanoparticles were coated by 5 nm thickness of amorphous $SiO_2$film. The nanocomposite particle has very low Mr and Hc value showing superparamagnetic behavior The magnetic heating effect of nanocomposite particle on surface coating phase of $SiO_2$was discussed in terms of superparamagnetic behaviors of each particles, and their potential for hyperthermia application was evaluated.

The Large Magnetocaloric Effect in Amorphous Fe80-xMnxZr10 (x = 4,6,8,10) Alloys

  • Moon, Y.M.;Min, S.G;Kim, K.S.;Yu, S.C.;Kim, Y.C.;Kim, K.Y.
    • Journal of Magnetics
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    • 제10권4호
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    • pp.142-144
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    • 2005
  • The Magnetization behaviour has been measured for amorphous $Fe_{80-x}Mn_xZr_{10}$ (x = 4,6,8,10) alloys. The Curie temperature decreased from 236 K to 195 K with increasing Mn concentration (x = 4 to x = 10). The magnetization measurements were conducted at temperatures above the Curie temperature in the paramagnetic region. In all samples, the magnetic properties showed superparamagnetic behavior above $T_c$ where the mean magnetic moment of the superparamagnetic spin clusters decreased with increasing temperature. A large magnetic entropy change, ${\Delta}S_M$, which is calculated from H vs M curves associated with the ferromagnetic-paramagnetic transitions in amorphous, has been observed. With Mn concentration increasing, ${\Delta}S_M$ decreases 1.04, 0.95, 0.87 J/kg K at 222, 210, 195 K (the Curie temperature), respectively.

산화철 나노입자의 크기에 따른 강자성 공명 신호의 선폭 특성 (Size Dependence of FMR Linewidth in Iron Oxide Nanoparticles)

  • 김동영;윤석수
    • 한국자기학회지
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    • 제24권1호
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    • pp.11-17
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    • 2014
  • 본 연구에서는 열 분해법으로 크기가 각각 D=4.67 nm, 5.64 nm 및 6.34 nm인 균일한 산화철 나노입자를 제조하여 강자성 공명 신호를 측정하였다. 측정된 강자성 공명 신호는 입자의 부피가 로그 정규 확률 분포를 갖는 초상자성 나노입자에 대하여 계산한 결과와 비교 분석하였다. 강자성 공명 신호의 선폭은 나노입자의 크기가 증가함에 따라 넓어졌으며, tanh($V^2$)에 비례하는 특성을 보였다. 이러한 나노입자의 크기에 따른 선폭 증가는 나노입자들 표면에 분포하는 표면 스핀과 결정 이방성 특성을 갖는 내부 스핀들에 의한 두 가지 강자성 공명 신호의 중첩에 기인함을 알 수 있었다.

뫼스바우어 분광법에 의한 양친매성 고분자 망상구조 나노복합체의 자기적 성질 연구 (A Study on Magnetic Properties of Amphiphilic Polymer Networks Nanocomposites by Mossbauer Spectroscopy)

  • 윤인섭
    • 한국자기학회지
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    • 제20권6호
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    • pp.216-221
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    • 2010
  • 본 연구에서는 dimethylacetamide(DMAc)와 toluen을 용매로 사용하여 만들어진 양친매성 urethan acrylate nonionomer(UAN) 선구고리를 기초로 하는 양친매성 고분자 망상구조 복합체에 철산화물을 주입시킨 나노복합체의 구조와 자기적성질 그리고 나노복합체에 존재하는 Fe 이온의 원자가 상태를 알아보기 위하여 전계방출주사전자현미경(FESEM)과 X-ray diffraction 그리고 Mossbauer spectrum을 측정하였다. 결과로부터 나노복합체 시료 내에 존재하는 모든 Fe이온은 $Fe^{3+}$의 상태로 존재하고 $Fe_2O_3$의 결정구조를 갖고 있음을 알 수 있으며, 시료 내에 철산화물 나노복합체가 형성되어 있음을 알 수 있었다. 그리고 urethan acrylate nonionomer(UAN) 선구 고리를 기초로 하는 양친매성 고분자 망상구조 복합체를 형성시키는 경우 용매로 DMAc를 이용하는 경우가 toluen을 이용한 경우 보다 더 미세한 나노구조를 형성함을 알 수 있으며, 시료들의 자기적 성질이 상온에서 상자성을 나타내는 것은 나노크기의 단일자구형성에 따른 초상자성효과에 의한 것임을 알 수 있었다.

Post Annealing Effects on Iron Oxide Nanoparticles Synthesized by Novel Hydrothermal Process

  • Kim, Ki-Chul;Kim, Young-Sung
    • Journal of Magnetics
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    • 제15권4호
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    • pp.179-184
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    • 2010
  • We have investigated the effects of post annealing on iron oxide nanoparticles synthesized by the novel hydrothermal synthesis method with the $FeSO_4{\cdot}7H_2O$. To investigate the post annealing effect, the as-synthesized iron oxide nanoparticles were annealed at different temperatures in a vacuum chamber. The morphological, structural and magnetic properties of the iron oxide nanoparticles were investigated with high resolution X-ray powder diffraction (XRD), high resolution transmission electron microscopy (HRTEM), Mossbauer spectroscopy, and vibrating sample magnetometer analysis. According to the XRD and HRTEM analysis results, as-synthesized iron oxide nanoparticles were only magnetite ($Fe_3O_4$) phase with face-centered cubic structure but post annealed iron oxide nanoparticles at $700^{\circ}C$ were mainly magnetite phase with trivial maghemite ($\gamma-Fe_2O_3$) phase which was induced in the post annealing treatment. The crystallinity of the iron oxide nanoparticles is enhanced by the post annealing treatment. The particle size of the as-synthesized iron oxide nanoparticles was about 5 nm and the particle shape was almost spherical. But the particle size of the post annealed iron oxide nanoparticles at $700^{\circ}C$ was around 25 nm and the particle shape was spherical and irregular. The as-synthesized iron oxide nanoparticles showed superparamagnetic behavior, but post annealed iron oxide nanoparticles at $700^{\circ}C$ did not show superparamagnetic behavior due to the increase of particle size by post annealing treatment. The saturation of magnetization of the as-synthesized nanoparticles, post annealed nanoparticles at $500^{\circ}C$, and post annealed nanoparticles at $700^{\circ}C$ was found to be 3.7 emu/g, 6.1 emu/g, and 7.5 emu/g, respectively. The much smaller saturation magnetization value than one of bulk magnetite can be attributed to spin disorder and/or spin canting, spin pinning at the nanoparticle surface.