• 제목/요약/키워드: magnetic nano-particles

검색결과 107건 처리시간 0.023초

Effect of Crystallization Treatment on the Magnetic Properties of Amorphous Strips Based on Co-Fe-Ni-B-Si-Cr Containing Nitrogen

  • Cho H.J.;Kwon H.T.;Ryu H.H.;Sohn K.Y.;You B.S.;Park W.W.
    • 한국분말재료학회지
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    • 제13권4호
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    • pp.285-289
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    • 2006
  • Co-Fe-Ni-B-Si-Cr based amorphous strips containing nitrogen were manufactured via melt spinning, and then devitrified by crystallization treatment at the various annealing temperatures of $300^{\circ}C{\sim}540^{\circ}C$ for up to 30 minutes in an inert gas $(N_2)$ atmosphere. The microstructures were examined by using XRD and TEM and the magnetic properties were measured by using VSM and B-H meter. Among the alloys, the amorphous ribbons of $Co_{72.6}Fe_{9.8}Ni_{5.5}B_{2.4}Si_{7.1}Cr_{2.6}$ containing 121 ppm of nitrogen showed relatively high saturation magnetization. The alloy ribbons crystallized at $540^{\circ}C$ showed that the grain size of $Co_{72.6}Fe_{9.8}Ni_{5.5}B_{2.4}Si_{7.1}Cr_{2.6}$ alloy containing 121 ppm of nitrogen was about f nm, which exhibited paramagnetic behavior. The formation of nano-grain structure was attributed to the finely dispersed Fe4N particles and the solid-solutionized nitrogen atoms in the matrix. Accordingly, it can be concluded that the nano-grain structure of 5nm in size could reduce the core loss within the normally applied magnetic field of 300A/m at 10kHz.

MgxNiyZn1-x-yFe2O4나노입자 제조를 위한 초음파 습식 자기분류법의 적용 (Application of Ultrasonic Wet-Magnetic Separation Method to Prepare Nano-sized MgxNiyZn1-x-yFe2O4)

  • 구문선;최용
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2016년도 추계학술대회 논문집
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    • pp.201.2-201.2
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    • 2016
  • $Mg_xNi_yZn_{1-x-y}Fe_2O_4$ ferrite powders were prepared by self-propagating high temperature synthesis followed by classified by ultrasonic wet-magnetic separation method to get nano-sized particles with high purity. The $Mg_xNi_yZn_{1-x-y}Fe_2O_4$ ferrites were well formed by using several powders like iron, nickel oxide, zinc oxide and magnesium oxide at 0.1 MPa of oxygen pressure. The ultrasonic wet-magnetic separation of pre-mechanical milled ferrite powders produced the powders with average size of $3.7-0.8{\mu}m$. The addition of a surfactant during the separation process improved productivity more than twice. The coercive force, maximum magnetization and residual magnetization of the $Mg_xNi_yZn_{1-x-y}Fe_2O_4$ nano-powders with 810 nm size were 45.89 Oe, 53.92 emu/gOe, 0.4 emu/Oe, respectively.

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Processing of Nano-Sized Metal Alloy Dispersed $Al_2O_3$ Nanocomposites

  • Oh, Sung-Tag;Seok Namkung;Lee, Jai-Sung;Kim, Hyoung-Seop;Tohru Sekino
    • 한국분말재료학회지
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    • 제8권3호
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    • pp.157-162
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    • 2001
  • An optimum route to fabricate the ferrous alloy dispersed $Al_2O_3$ nanocomposites such as $Al_2O_3$/Fe-Ni and $Al_2O_3$/Fe-Co with sound microstructure and desired properties was investigated. The composites were fabricated by the sintering of powder mixtures of $Al_2O_3$ and nano-sized ferrous alloy, in which the alloy was prepared by solution-chemistry routes using metal nitrates powders and a subsequent hydorgen reduction process. Microstructural observation of reduced powder mixture revealed that the Fe-Ni or Fe-Co alloy particles of about 20 nm in size homogeneously surrounded $Al_2O_3$, forming nanocomposite powder. The sintered $Al_2O_3$/Fe-Ni composite showed the formation of Fe$Al_2O_4$ phase, while the reaction phases were not observed in $Al_2O_3$/Fe-Co composite. Hot-pressed $Al_2O_3$/Fe-Ni composite showed improved mechanical properties and magnetic response. The properties are discussed in terms of microstructural characteristics such as the distribution and size of alloy particles.

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나노 구조 Fe-Co 합금분말의 제조 및 자성특성 (Fabrication and Magnetic Properties of Nanostructured Fe-Co Alloy Powder)

  • 이백희;안봉수;김대건;김영도
    • 한국분말재료학회지
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    • 제9권3호
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    • pp.182-188
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    • 2002
  • Conventional Fe-Co alloys are important soft magnetic materials that have been widely used in industry. Compared to its polycrystalline counterpart, the nanostructured materials have showed superior magnetic properties, such as higher permeability and lower coercivity due to the single domain configuration. However, magnetic properties of nanostructured materials are affected in complicated manner by their microstructure such as grain size, internal strain and crystal structure. Thus, studies on synthesis of nanostructured materials with controlled microstructure are necessary for a significant improvement in magnetic properties. In the present work, starting with two powder mixtures of Fe and Co produced by mechanical alloying (MA) and hydrogen reduction process (HRP), differences in the preparation process and in the resulting microstructural characteristics will be described for the nano-sized Fe-Co alloy particles. Moreover, we discuss the effect of the microstructure such as crystal structure and grain size of Fe-Co alloys on the magnetic properties.

A Magnetization Study of Prussian-blue Analogue NaxMny[Fe(CN)6]

  • Minh, Nguyen Van;Phu, Phung Kim;Thuan, Nguyen Minh;Yang, In-Sang
    • Journal of Magnetics
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    • 제13권4호
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    • pp.149-152
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    • 2008
  • In this report, we present the results of a study on the effects of the particle size on the properties of the Prussian blue (PB) analog $Na_xMn_y[Fe(CN){_6}]$. A novel synthesis method of the $Na_xMn_y[Fe(CN){_6}]$ nano-particles using an organic solvent, formamide, is employed. The size of the PB particles is found to be 100-150 nm for the samples prepared in the formamide solvent, which is much smaller than that of the samples prepared using water only. The broadening of the X-ray diffraction peaks of the nano-sized PB samples is attributed to the lattice disorder and a dramatic reduction in the particle size. The compositions of the samples are confirmed by an energy-dispersive X-ray analysis (EDAX), and the result proves that the samples are actually $Na_xMn_y[Fe(CN){_6}]$ Prussian blue. The UV-vis spectra show a broad intervalence charge-transfer (CT) band in the visible region between 400 and 700 nm, and the absorption decreases abruptly in the green region for the nano-sized PB sample. A divergence between the field cooled (FC) and zero field cooled (ZFC) magnetization curves is observed for the nano-sized PB sample at 11 K, indicating that nanoparticles in the sample are single domain superparamagnets with a blocking temperature of 11 K. Our results reveal that the nano-sized PB samples show significantly different optical and magnetic properties than those of the bulk PB samples.

Effect of Ag on microstructural behaviour of Nanocrystalline $Fe_{87-x}Zr_7B_6Ag_x$($0{\leq}x_{Ag}{\leq}4$) Magnetic Thin Films Materials

  • 이원재;민복기;송재성
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2002년도 춘계학술대회 논문집 초전도 자성체
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    • pp.3-6
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    • 2002
  • Effect of Ag additive element on microstructure of $Fe_{87-x}Zr_7B_6Ag_x$, magnetic thin films on Si(001) substrates has been investigated using Transmission Electron Microscopy(TEM) and X-ray Diffraction(XRD). All samples with additive Ag element were made by DC-sputtering and subjected to annealing treatments of $300^{\circ}C{\siim}600^{\circ}C$ for 1 hr. TEM and XRD showed that perfectly amorphous state in Ag-free Fe-based films was observed in as-deposited condition. The as-deposited Fe-based films with the presence of Ag constituent have a mixture of Fe-based amorphous and nano-sized Ag crystalline phases. In this case, additive element, Ag was soluted into Fe-based matrix. With the increase in additive element, Ag, insoluble nano-crystalline Ag particles were dispersed in the Fe-based amorphous matrix. Crystallization of Fe-based amorphous phase in the matrix of $Fe_{82}Zr_7B_6Ag_5$ thin films occurred at an annealing temperature of $400^{\circ}C$. Upon annealing, the amorphous-Ag crystalline state of Fe-Zr-B-Ag films was transformed into the mixture of Ag crystalline phase + Fe-based amorphous phase + ${\alpha}$-Fe cluster followed by the crystallization process of ${\alpha}$-Fe nanocrystalline + Ag crystalline phases.

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Impact in bioconvection MHD Casson nanofluid flow across Darcy-Forchheimer Medium due to nonlinear stretching surface

  • Sharif, Humaira;Hussain, Muzamal;Khadimallah, Mohamed A.;Naeem, Muhammad Nawaz;Ayed, Hamdi;Tounsi, Abdelouahed
    • Smart Structures and Systems
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    • 제28권6호
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    • pp.791-798
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    • 2021
  • Current investigation aims to analyze the characteristics of magnetohydrodynamic boundary layer flow of bioconvection Casson fluid in the presence of nano-size particles over a permeable and non-linear stretchable surface. Fluid passes through the Darcy-Forchheimer permeable medium. Effect of different parameter such as Darcy-Forchheimer, porosity parameter, magnetic parameter and Brownian factor are investigated. Increasing Brownian factor leads to the rapid random movement of nanosize particles in fluid flows which shows an expansion in thermal boundary layer and enhances the nanofluid temperature more rapidly. For large values of Darcy-Forchheimer, magnetic parameter and porosity factor the velocity profile decreases. Higher values of velocity slip parameter cause decreasing trend in momentum layer with velocity profile.

초상자성 나노 입자의 자기이완 특성에 관한 이론적 연구 (The Development of Theoretical Model for Relaxation Mechanism of Sup erparamagnetic Nano Particles)

  • 장용민;황문정
    • Investigative Magnetic Resonance Imaging
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    • 제7권1호
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    • pp.39-46
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    • 2003
  • 목적 : 간(liver)과 림프절 특이성 등의 다기능성을 나타내는 미세 초상자성 산화철 입자(ultrasmall superparamagnetic iron oxide: USP IO)의 자기이완(magnetic relaxation)에 대한 이론적 모델을 제시하고 이러한 이론적 모델에 근거한 미세 초상자성 산화철 입자의 자기장의 세기에 따른 자기 이완시간의 변화를 컴퓨터 모의 실험을 통해 연구하였다. 대상 및 방법 : 초상자성 산화철 입자를 조영제로 사용하기 위해서는 생체적합성 고분자로 축약(encapsulation)시키게 되고 따라서 확산(diffusion) 및 전자스핀의 fluctuation 에 기인하여 발생하는 자유 물분자와 간접 상호작용인 "outsphere " 기전에 근거하여 자기이완모델을 개발하였다. 또한 초상자성체의 경우 자기 모멘트가 상자성 입자에 비해 최소 수백배에서 최대 수만배까지 더 크므로 일반적으로 상자성 조영제의 "out sphere" 기전에서 가정하는 저자장 근사치를 사용할 수 없고 따라서 본 연구에서는 Brillouin함수로 표현되는 총자화에 대한 표현을 적용하여 저자장뿐만 아니라 고자장의 경우까지를 모두 포함하는 "out sphere" 기전에 의한 T1 그리고 T2 이완율에 대한 모델을 개발하였다. 이렇게 개발된 자기이완모델을 사용하여 미세 초상자성 산화철 입자의 자기장의 세기에 따른 자기 이완시간의 변화를 symbolic computation tool 인 MathCad(MathCad, USA)를 사용한 컴퓨터 모의 실험을 통해 조사하였다. 결과 : 미세 초상자성 산화철 입자의 T1, T2 자기이완 특성은 먼저, 저자장 영역 (<1.0 Mhz)에서는 이론적 모델의 spectral density function에 들어 있는 두 개의 correlation time중 $\tau$$_{s1}$ 중 (T2의 경우 ${\tau}_{S2}$)이 주된 역할을 하는 것을 알 수 있었고 이는 결과적으로 이러한 나노자성체 입자들이 낮은 자기장하에서는 열적으로 야기된 자기모멘트들의 재배열이 주된 역할을 하는 것으로 해석할 수 있다. 한편 고자장 영역에서는 correlation time 중 $\tau$가 주된 역할을 담당하는데는 $\tau$는 나노 입자의 크기와 연관되어 있으며 고자장에서 입자 크기에 따른 T1 이완율(R1)과 T2 이완율(R2)의 차이는 이러한 입자크기의 차이에 의해 발생하는 것으로 해석할 수 있다. 나노입자에 포함된 철 원자수를 변화시키는 경우 철 원자수가 증가 할 수록 R1과 R2가 증가하는 결과를 나타내었다. 한편 온도변화에 따른 T1, T2 자기이완시간의 변화는 정상체온 근처의 제한적인 온도범위내에서 저자장 영역에서의 아주 작은 변화를 제외하고는 큰 차이를 보이지 않았으나 T1에 비해 T2에서 이러한 변화가 상대적으로 더 작게 나타났다. 결론 : 임상적 다기능성을 나타낼 가능성이 많은 것으로 보고되고 있는 미세 초상자성 산화철 입자의 자기이완에 대한 이론적 모델을 초상자성 나노입자의 물리적 특성에 기초하여 제시하였고 이러한 이론적 모델에 근거한 미세 초상자성 산화철 입자의 자기장의 세기에 따른 자기 이완시간의 변화를 컴퓨터 모의 실험을 통해 조사하였다.다.

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Effect of annealing on the magnetic behavior and microstructures of spherical NiZn ferrite particle prepared by ultrasonic spray pyrolysis

  • Nam, Joong-Hee
    • 한국결정성장학회지
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    • 제17권1호
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    • pp.11-17
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    • 2007
  • The spherical NiZn ferrite particles were prepared by ultrasonic spray pyrolysis with mixed solution of aqueous metal nitrates. The NiZn ferrite particle was observed with nano-sized primary particles of about 10 nm or less before annealing which represented as paramagnetic behavior measured at 77 K and room temperature. The typical abnormal growth of primary particles like polyhedral primary particles was observed by annealing at 1273 K with Zn-concentration dependency. The XRD patterns showed good crystallinity of NiZn ferrite powder after annealing. In annealing process, the intra-particle sintering phenomenon was observed and the spherical particle morphology was collapsed at 1673 K. The saturation magnetization of NiZn ferrite powder for each annealing temperature was decreased with measuring temperature of $77{\sim}$300K.

The Microstructure and Magnetic Properties of YIG Powders Synthesized by a Coprecipitaion and a Sonochemical Process

  • Hong, Seong-Min;Kim, Yong-Il;Kim, Cheol-Gi
    • Journal of Magnetics
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    • 제14권4호
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    • pp.165-167
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    • 2009
  • Nano-sized Yttrium iron garnet (YIG;$Y_3Fe_5O_{12}$) particles have been synthesized by using coprecipitation and a heat treatment process. The YIG particles were made using a nitrate or a chloride salt solution. The pH concentration of the solution was fixed at 12. Spherical shaped YIG particles were made with a size of about 20 nm. The magnetization value of the particles was smaller than the bulk value but their coercive field showed a high value.