• 제목/요약/키워드: Superexchange

검색결과 29건 처리시간 0.025초

Synthesis and M$\ddot{o}$ssabuer Spectroscopy Studies of $Nd_{1-x}Bi_xY_2Fe_5O_{12}$ Nano-Particles

  • Uhm, Young Rang;Lee, Jae-Gwang;Kim, Chul Sung
    • Journal of Magnetics
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    • 제5권1호
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    • pp.16-18
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    • 2000
  • The garnets $Nd_{1-x}Bi_xY_2Fe_5O_{12}$ ($\chi$=0.0, 0.25, 0.5, 0.75 and 1.0) have been studied by x-rays, electron microscopy, ferromagnetic resonance, vibrating sample magnetometer and Mossbauer spectroscopy, Ultra-fine polycrystalline cubic samples have been prepared by a melt-salt routed sol-gel method. The Mossbauer spectra consist of two sets of six-line patterns corresponding to $Fe^{3+}$ at the tetrahedral 24(d) and octahedral 16(a) sites. Magnetic hyperfine fields of $Nd_{0.5}Bi_{0.5}Y_2Fe_5O_{12}$ at 12 K are found to be 548 kOe (octahedral site) and 475 kOe (tetrahedral site), respectively, It is found that Debye temperatures for the tetrahedral and octahedral sites of $Nd_{0.75}Bi_{0.25}Y_2Fe_5O_{12}$ are $\theta_{tet}=436$ K and $\theta_{oct}=285$ K, respectively, The iron ions at both sites are highly covalent ferric. The Nel temperature decreases linearly with Bi concentration, from 630 K fur $\chi$=0.0 to 600 K for $\chi$=1.0, suggesting that the superexchange interaction for the Nd-O-Fe link is stronger than that for the Bi-O-Fe link. As a consequence, the coercivity of $Nd_{1-x}Bi_xY_2Fe_5O_{12}$ drastically decreases and the magnetization remains almost constant as x increases.

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Simultaneous regulation of photoabsorption and ferromagnetism of NaTaO3 by Fe doping

  • Yang, Huan;Zhang, Liguo;Yu, Lifang;Wang, Fang;Ma, Zhenzhen;Zhou, Jie;Xu, Xiaohong
    • Current Applied Physics
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    • 제18권11호
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    • pp.1422-1425
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    • 2018
  • $NaTa_{1-x}Fe_xO_3$ ($0{\leq}x{\leq}0.40$) nanocubes were synthesized by a relatively low temperature hydrothermal method, using $Ta_2O_5$, $FeCl_3$ and NaOH as the precursors. The UV-vis diffuse reflectance spectra showed that $NaTa_{1-x}Fe_xO_3$ had significant visible-light-absorbing capability, and the absorption edge of $NaTaO_3$ shifted to longer wavelength with the increase of Fe dopants. Moreover, $NaTa_{1-x}Fe_xO_3$ exhibited room-temperature ferromagnetism when $Fe^{3+}$ occupied $Ta^{5+}$ sites in $NaTaO_3$ crystal lattice. The ferromagnetism is mainly attributed to the superexchange interactions between doped $Fe^{3+}$, rather than the contribution of oxygen vacancies caused by Fe doping. Therefore, Fe doping can simultaneously regulate the optical and magnetic properties of $NaTaO_3$ semiconductor, which will enable its potential applications in multifunctional optical-electronics and opticalspintronics devices.

Crystallographic and Magnetic Properties of Co, Zn, Ni-Zn Substituted Nano-size Manganese Ferrites Synthesized by Sol-gel Method

  • Noh, Kwang Mo;Lee, Young Bae;Kwon, Woo Hyun;Kang, Jeoung Yun;Choi, Won-Ok;Chae, Kwang Pyo
    • Journal of Magnetics
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    • 제21권3호
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    • pp.308-314
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    • 2016
  • Cobalt-, zinc-, and nickel-zinc-substituted nano-size manganese ferrite powders, $MnFe_2O_4$, $Mn_{0.8}Co_{0.2}Fe_2O_4$, $Mn_{0.8}Zn_{0.2}Fe_2O_4$ and $Mn_{0.8}Ni_{0.1}Zn_{0.1}Fe_2O_4$, were fabricated using a sol-gel method, and their crystallographic and magnetic properties were subsequently studied. The $MnFe_2O_4$ ferrite powder annealed at temperatures above 523 K exhibited a spinel structure, and the particle size increased as the annealing temperature increased. All ferrites annealed at 773 K showed a single spinel structure, and the lattice constants and particle size decreased with the substitution of Co, Zn, and Ni-Zn. The $M{\ddot{o}}ssbauer$ spectrum of the $MnFe_2O_4$ ferrite powder annealed at 523 K only showed a doublet due to its superparamagnetic phase, and the $M{\ddot{o}}ssbauer$ spectra of the $MnFe_2O_4$, $Mn_{0.8}Co_{0.2}Fe_2O_4$, and $Mn_{0.8}Zn_{0.2}Fe_2O_4$ ferrite powders annealed at 773 K could be fitted as the superposition of two Zeeman sextets due to the tetrahedral and octahedral sites of the $Fe^{3+}$ ions. However, the $M{\ddot{o}}ssbauer$ spectrum of the $Mn_{0.8}Ni_{0.1}Zn_{0.1}Fe_2O_4$ ferrite powder annealed at 773 K consisted of two Zeeman sextets and one quadrupole doublet due to its ferrimagnetic and paramagnetic behavior. The area ratio of the $M{\ddot{o}}ssbauer$ spectra could be used to determine the cation distribution equation, and we also explained the variation in the $M{\ddot{o}}ssbauer$ parameters by using this cation distribution equation, the superexchange interaction and the particle size. Relative to pure $MnFe_2O_4$, the saturation magnetizations and coercivities were larger in $Mn_{0.8}Co_{0.2}Fe_2O_4$ and smaller in $Mn_{0.8}Zn_{0.2}Fe_2O_4$, and $Mn_{0.8}Ni_{0.1}Zn_{0.1}Fe_2O_4$. These variations could be explained using the site distribution equations, particle sizes and magnetic moments of the substituted ions.

${Ni_{1+x}}{Ti_x}{Fe_{2-2x}}O_4$계의 $\M"{o}ssbauer$ 스펙트럼 연구 (A Study on Mossbauer Spectra of the ${Ni_{1+x}}{Ti_x}{Fe_{2-2x}}O_4$ System)

  • 백승도;고정대;홍성락
    • 한국재료학회지
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    • 제11권1호
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    • pp.3-7
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    • 2001
  • $Ni_{1+x}/Ti_{x}Fe_{2-2x}O_4$계 시료중 스피넬의 단일상만 존재하는 x값이 0~0.7인 시료에 대한 Mossbauer 스펙트럼을 측정 분석하였다. $0{\leqq}x{\leqq}0.3$인 시료에서는 두 site의 $Fe^{3+}$ 이온에 의한 두 개의 6선 흡수선이 나타났고, $0.4{\leqq}x{\leqq}0.6$인 시료에서는 두개의 6선 흡수선과 2선 흡수선이 공존하였으며, x=0.7인 시료는 2선 흡수선만 나타났다. x값의 증가에 따라 6선 흡수선의 A-site 공명 흡수 면적이 B-site에 비해 상대적으로 커지고, 2선 홀수선의 공명 흡수면적도 6선 흡수선에 비해 커지는 것을 알 수 있었다. Mossbauer parameter중 이성질체 이동치 (I.S.)는 A-site의 경우에는 x값의 증가에 따라 커지는 반면 B-site는 큰 영향을 주지 않았고, 사중극자 분열치 (Q.S.)의 변화는 볼 수 없었으며, 두 Site의 미세자기장 ($H_{hf}$)은 X값의 증가에 따라 모두 감소하였다. 이러한 실험 결과로부터 시료의 금속 양이온 분포식을 구하였고, X값의 증가는 A-Site의 $Fe^{3+}-O^{2-}$ 결합의 공유 결합성을 약화시키는 반면 B-Site의 $Fe^{3+}O^{2-}$ 결합에는 큰 영향을 주지 않으며, 또한 X값의 증가에 따라 $Fe^{3+}\;_A-O^{2-}\;-Fe^{3+}\;_B$ 결합의 수가 감소하여 A-B 초교환 상호 작용이 약화되는 것을 알 수 있었다.

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Nickel Substitution Effects on Nano-sized Co, Mn and MnZn Ferrites Synthesized by Sol-gel Method

  • Choi, Won-Ok;Kwon, Woo Hyun;Chae, Kwang Pyo;Lee, Young Bae
    • Journal of Magnetics
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    • 제21권1호
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    • pp.40-45
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    • 2016
  • Nickel substituted nano-sized ferrite powders, $Co_{1-x}Ni_xFe_2O_4$, $Mn_{1-x}Ni_xFe_2O_4$ and $Mn_{1-2x}Zn_xNi_xFe_2O_4$ ($0.0{\leq}x{\leq}0.2$), were fabricated using a sol-gel method, and their crystallographic and magnetic properties were subsequently compared. The lattice constants decreased as quantity of nickel substitution increased, while the particle size decreased in $Co_{1-x}Ni_xFe_2O_4$ ferrite but increased for the $Mn_{1-x}Ni_xFe_2O_4$ and $Mn_{1-2x}Zn_xNi_xFe_2O_4$ ferrites. For the $Co_{1-x}Ni_xFe_2O_4$ and $Mn_{1-x}Ni_xFe_2O_4$ ($0.0{\leq}x{\leq}0.2$) ferrite powders, the $M{\ddot{o}}ssbauer$ spectra could be fitted as the superposition of two Zeeman sextets due to the tetrahedral and octahedral sites of the $Fe^{3+}$ ions. However, the $M{\ddot{o}}ssbauer$ spectrum of $Mn_{0.8}Zn_{0.1}Ni_{0.1}Fe_2O_4$ consisted of two Zeeman sextets and one single quadrupole doublet due to the ferrimagnetic and paramagnetic behavior. The area ratio of the $M{\ddot{o}}ssbauer$ spectra could be used to determine the cation distribution equation, and we also explain the variation in the $M{\ddot{o}}ssbauer$ parameters by using this cation distribution equation, the superexchange interaction and the particle size. The saturation magnetization decreased in the $Co_{1-x}Ni_xFe_2O_4$ and $Mn_{1-2x}Zn_xNi_xFe_2O_4$ ferrites but increased in the $Mn_{1-x}Ni_xFe_2O_4$ ferrite with nickel substitution. The coercivity decreased in the $Co_{1-x}Ni_xFe_2O_4$ and $Mn_{1-2x}Zn_xNi_xFe_2O_4$ ferrites but increased in the $Mn_{1-x}Ni_xFe_2O_4$ ferrite with nickel substitution. These variations could thus be explained by using the site distribution equations, particle sizes and spin magnetic moments of the substituted ions.

Hexaferrite 쉬트자석의 개발과 자기적 성질에 관한 연구 (The development and the magnetic properties of sheet hexaferrite magnets)

  • 김철성;박승일;오영제
    • 한국자기학회지
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    • 제5권4호
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    • pp.281-286
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    • 1995
  • Hexaferrite $Ba_{0.25}Sr_{0.75}Fe_{12}O_{19}$$SiO_{2}$를 첨가한 쉬트자석의 자기적 성질의 변화를 연구하기 위해 X-선 회절 실험, 뫼스바우어 분광실험, 자기모멘트 측정실험 등을 하였다. 쉬트자석은 Dr. Blade 방법에 의해 제조되었고, 결정구조는 마그네토플럼바이트 M-type 육방결정구조이다. 첨가제 농도에 따른 격자상수의 변화는 거의 없으나, $SiO_{2}$가 2.0 wt.% 이상부터 ${\alpha}-Fe_{2}O_{3}$ 의 상이 나타나기 시작했다. 이성질체 이동값은 Fe이온들이 3가 임을 나타낸다. $SiO_{2}$의 증가에 따라 Curie 온도는 감소함을 보였다. 이것은 $Si^{4+}$가 12k-site $Fe^{3+}$의 자리를 차지함으로써 Fe-O-Fe의 초교환상호작용에 의한 원자간 거리와 양이온 사이의 각이 변함에 따른 것이다. ${\alpha}-Fe_{2}O_{3}$의 상은 $Si^{4+}$가 12k-site $Fe^{3+}$의 자리를 차지함으로 치환된 $Fe^{3+}$에 의해 나타난 것이다. 자기모멘트측정으로 부터 $SiO_{2}$를 첨가한 $Ba_{0.25}Sr_{0.75}Fe_{12}O_{19}$ 쉬트자석은 보자력 $H_{c}$, 포화자화 $M_{s}$, 잔류자화 $M_{r}$이 양이온 치환보다는 미세구조변화에 더 의존함을 알았다.

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Physical Properties of the Nonstoichiometric Perovskite $Dy_{1-x}Sr_xCoO_{3-y}$ System

  • 정수경;김민규;김규홍;여철현
    • Bulletin of the Korean Chemical Society
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    • 제17권9호
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    • pp.794-798
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    • 1996
  • Solid solutions of the nonstoichiometric Dy1-xSrxCoO3-y system with the compositions of x=0.00, 0.25, 0.50, 0.75, and 1.00 have been synthesized by the solid state reaction at 1000 ℃ under atmospheric air pressure. The crystallographic structures of the solid solutions are analyzed by the powder X-ray diffraction patterns at room temperature. The analyses assign the compositions of x=0.00 and 0.25 to the orthorhombic system with space group of Pbnm/D2h16, the compositions of x=0.50 and 0.75 to the tetragonal system like a typical SrCoO2.86, and the composition of x=l.00 or SrCoO2.50 to the brownmillerite type system with space group of I**a. The reduced lattice volumes increase with x value due to the larger radius of Sr2+ ion than that of Dy3+ ion. The mole ratio of Co4+ ion to total Co ion with mixed valence state between Co3+ and Co4+ ions at B sites or τ value has been determined by an iodometric titration. All the samples except for the DyCoO3 compound show the mixed valnce state and thus the composition of x=0.50 has the maximum τ value in the system. The oxygen vacancies increasing with x value are randomly distributed over the crystal lattice except for the composition of x=l.00 which have the ordering of the oxygen vacancies. The nonstoichiometric chemical formulas of the Dy1-xSrxCo3+1-τCo4+τO3-(x-τ)/2 system are formulated from the x, τ, and y values. The electrical conductivity in the temperature range of 100 to 900 K increases with τ value linearly because of positive holes of the Co4+ ions in π* band as a conducting carrier. The activation energy of the x=0.50 as Ea=0.17 eV is minimum among other compouds. Broad and high order transition due to the overlap between σ* and π* bands broadened by the thermal activation is observed near 1000 K and shows a low temperature-semiconducting behavior. Magnetic properties following the Currie-Weiss law show the low to high spin transition in the cobaltate perovskite. Especially, the composition of x=0.75 presents weak ferromagnetic behavior due to the Co3+-O2--Co4+ indirect superexchange interaction.

반대칭 교환 상호작용을 갖도록 Fe-Site가 제어된 PbFe1/2Nb1/2O3의 강유전/자기적 특성 연구 (Investigation on Ferroelectric and Magnetic Properties of Pb(Fe1/2Nb1/2)O3 Fe-Site Engineered with Antisymmetric Exchange Interaction)

  • 박지훈;이주현;조재현;장종문;조욱
    • 한국전기전자재료학회논문지
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    • 제35권3호
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    • pp.297-302
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    • 2022
  • We investigated the origin of magnetic behaviors induced by an asymmetric spin exchange interaction in Fe-site engineered lead iron niobate [Pb(Fe1/2Nb1/2)O3, PFN], which exhibits a room-temperature multiferroicity. The magnitude of spin exchange interaction was regulated by the introduced transition metals with a distinct Bohr magneton, i.e., Cr, Co, and Ni. All compositions were found to have a single-phase perovskite structure keeping their ferroelectric order except for Cr introduction. We discovered that the incorporation of each transition metal imposes a distinct magnetic behavior on the lead iron niobate system; antiferro-, hard ferro-, and soft ferromagnetism for Cr, Co, and Ni, respectively. This indicates that orbital occupancy and interatomic distance play key roles in the determination of magnetic behavior rather than the magnitude of the individual Bohr magneton. Further investigations are planned, such as X-ray absorption spectroscopy, to clarify the origin of magnetic properties in this system.

1차원 구조를 갖는 Thiophoshates, $Al_2NiP_2S_6$ (A=Rb, Cs)의 합성, 구조 및 자기적 성질 (Synthesis, Sytructure, and Magnetic Properties of One-Dimensional Thiophoshates, $Al_2NiP_2S_6$ (A=Rb, Cs))

  • 동용관;이건수;윤호섭;허남회
    • 대한화학회지
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    • 제45권3호
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    • pp.242-246
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    • 2001
  • 사성분계 thiophosphates, $A_2NiP_2S_6>(A=Rb$, Cs)를 halide fluxes 법으로 합성하였으며 단결정 X-ray 회절방법으로 결정 구조를 해석하였다. 이 화합물들을 $C_{2h}^5-P2_1/n$ 의 공간군을 가지며, $Rb_2NiP_2S_6$의 경우 a=5.960(2), b=12.323(4), $c=7.491(3)\AA$, $\beta=97.05(3)^{\circ}$, $V=546.0(3)\AA^3$이고$Cs_2NiP_2S_6$의 경우 a=5.957(4),b=12.696(7), $c=7.679(4)\AA$, $\beta=93.60(5)^{\circ}$, $V=579.7(5)\AA^3$인 격자상수를 갖는다. 이 두화합물은 동일한 결정 구조를 갖는다. 이들의 구조는 결정학적인 a축을 따라 성장한 1차원적인 무한사슬 $_{\infty}^1[NiP_2S_6^{2-}]$로 구성되어 있으며 이 사슬들은 알칼리 금속과의 정전기적 인력을 통하여 안정화 되어있다. Ni원자는 6개의 S원자에 의해 팔면체 배위를 하고 있고, Ni$S_6$팔면체는 $[P_2S_6^{4-}]$ 음이온 3개의 $\mu-S$ 원자들에 의해 연결되어 무한 1차원적인 사슬을 형성한다. $Cs_2NiP_2S_6$에 대한 자화율 측정결과 Neel temperature($T_N$)에 상응하는 8K 이하에서 superexchange를 통한 반자기성 magnetic coupling을 발견하였다. $T_N$이상의 온도에서는 Curie-Weiss법칙을 따른다. 자기 모멘트, C(Curie), 그리고 $\theta$(Weiss Constant)는 각각 2.77 B.M., 0.9593K, 그리고 -19.02K 이다. 측정 결과로부터 얻은 유효 자기 모멘트는 spin-only $Ni^{2+}d^8$(2.83 B.M.)계의 결과와 일치한다.

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