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1.
孙晓东  徐宝  吴鸿业  曹凤泽  赵建军  鲁毅 《物理学报》2017,66(15):157501-157501
研究了Tb掺杂对双层锰氧化物La_(4/3)Sr_(5/3)Mn_2O_7磁熵变和电输运性质的影响.样品采用传统固相反应法制备,两样品的名义组分可以表示为(La_(1-x)Tb_x)_(4/3)Sr_(5/3)Mn_2O_7(x=0,0.025),磁场为7 T时的最大磁熵变?S_M分别为-4.60 J/(kg·K)和-4.18 J/(kg·K).比较后发现,Tb元素的掺杂使得最大磁熵变值减小,但同时增大了相对制冷温区.电性测量结果表明,x=0.025的样品在高温区的导电机制可以用小极化子模型解释,与母体三维变程跳跃模型不同;当温度降低至三维长程铁磁有序温度(T_c~(3D))附近时,掺杂样品发生金属绝缘相变;掺杂后样品在T_c~(3D)附近,磁电阻取得极大值(约为56%),表明是本征磁电阻效应.  相似文献   

2.
郝志红  王海英  张荃  莫兆军 《物理学报》2018,67(24):247502-247502
EuTi0_3是直接带隙半导体材料,在液氦温度附近呈现反铁磁性,且具有较大的磁熵变,但是当其转变为铁磁性时,可以有效提高低磁场下的磁熵变.本文通过元素替代,研究晶格常数的变化和电子掺杂对磁性和磁热效应的影响.实验采用溶胶凝胶法制备EuTiO_3和Eu_(0.9)M_(0.1)TiO_3 (M=Ca, Sr, Ba, La, Ce, Sm)系列样品.结果表明:大离子半径的碱土金属离子替代提高了铁磁性耦合,有利于提高低磁场下的磁热效应.电子掺杂可以抑制其反铁磁性耦合从而使其表现为铁磁性.当大离子半径的稀土La和Ce离子替代Eu离子时,既增大了晶格常数也实现了电子掺杂,表现出较强的铁磁性.在1 T的磁场变化下,Eu_(0.9)La_(0.1)TiO_3和Eu_(0.9)Ce_(0.1)TiO_3的最大磁熵变分别为10.8和11 J/(kg·K),均大于EuTi0_3的9.8 J/(kg·K);制冷能力分别为39.3和51.8 J/kg,相对于EuTi0_3也有所提高.  相似文献   

3.
利用固态反应法制备了Mn3Sn1-xCoxC1.1(x=0.05,0.1,0.2)系列化合物,研究了Co掺杂对其磁性质、相变、熵变的影响.随着Co掺杂量的增加,样品的居里温度由283 K先降到212 K(Mn3Sn0.9Co0.1C1.1)后又升到332 K(Mn3Sn0.2Co0.8C1.1),相变类型由一级相变逐渐转变为二级相变.增大Co的掺杂量,Mn3Sn1-xCoxC1.1化合物的熵变峰值逐渐减小,磁熵变温区由9 K展宽到300 K.当Co掺杂量为0.2时,相对制冷量达到最高,为103 J/kg(磁场强度为1.6 MA/m).由于室温附近良好的磁致冷效应,该类材料在磁制冷领域可能具有重要的应用前景.  相似文献   

4.
La0.8-xCa0.2MnO3纳米颗粒的居里温度与磁热效应   总被引:8,自引:0,他引:8       下载免费PDF全文
陈伟  钟伟  潘成福  常虹  都有为 《物理学报》2001,50(2):319-323
采用溶胶凝胶法制备了系列La0.8-xCa0.2MnO3多晶样品,用X射线衍射分析确定了样品的钙钛矿结构,用透射电子显微镜观察了样品的形貌及粒径分布情况,用PAR155型振动样品磁强计测量了样品的磁性随外场和温度的变化,确定样品的居里温度并计算了各样品的磁熵变.磁测量及计算结果表明制备的各样品的居里温度在180—260K的范围内且随焙烧温度和La3+离子空位浓度的不同而变化,不同温度焙烧的样品均有较大的磁熵变值,其中1100℃焙烧的La0.77Ca0.2MnO3,多晶样品在240.5K,H=1.0T的外场下的磁熵变达3.76J/kg·K,对实验结果做了定性的分析.该材料具有较高的居里温度和较大的磁熵变,所需外场强度适中,电阻率高,性能稳定,适合做高温磁制冷材料. 关键词: 钙钛矿 居里温度 磁热效应  相似文献   

5.
Ce2Fe16Al化合物在居里温度附近的磁性和磁熵变   总被引:2,自引:1,他引:1       下载免费PDF全文
研究了具有菱方Th2Zn17型结构的Ce2Fe16Al化合物在居里温度TC附近的磁性和磁熵变.实验结果表明,在居里温度附近样品的磁特性符合二级相变规律,样品的居里温度为2758K.通过磁化强度与磁场和温度关系的测量,计算出临界指数β=044±001,γ=130±001,δ=383±001,临界指数β,γ,δ基本满足标度率方程γ=β(δ-1),但偏离三维Heisenberg模型的理论值.Ce2Fe16Al化合物的磁熵变在居里温度处达到峰值,2T外磁场下的最大磁熵变为195J/kg K. 关键词: Ce2Fe16Al化合物 临界指数 磁熵变  相似文献   

6.
本文采用传统固相反应法制备多晶La_(0.5-x)Nd_xSr_(0.5)CoO_3(x=0,0.1,0.15)系列样品,通过测量其磁化强度与温度变化曲线(M~T)、磁化强度与外场变化曲线(M~H)、电子自旋共振谱(ESR)和电阻率与温度变化曲线(ρ~T)对样品的磁性和电输运性质进行了研究.结果表明:由于Nd~(3+)离子掺杂,使得系统中Co~(3+)和Co~(4+)离子之间的铁磁耦合增大,自旋与晶格的耦合作用增强,从而导致掺杂前后样品的磁性方面发生了改变:样品的铁磁转变温度TC和磁熵变值|ΔSM|均随掺杂量x的增加而增大,三个样品的TC分别为:190K、205K和233K,x=0.0样品在TC附近的相变为二级相变,x=0.1和x=0.15样品在TC附近的相变为一级相变.同样的,Nd~(3+)离子掺杂使得样品在电输运性质方面也发生了改变:由于Nd~(3+)离子掺杂,体系内Co离子的自旋态和无序性等均发生改变,从而使x=0.1样品中铁磁导电区域增大,尽管x=0.0和x=0.1样品均表现出绝缘体行为,但是随着掺杂量x的增加,电阻率大幅降低.  相似文献   

7.
本文采用光学浮区法生长了HoFe_(0.95)Mn_(0.05)O_3单晶样品,对其磁性和磁热效应进行了研究.研究表明,微量Mn的掺杂使HoFeO_3的自旋重取向温度由58K升高到102K.磁化强度随温度变化和自旋重取向相变过程中的热滞现象共同说明,自旋重取向由原来HoFeO_3中的Γ_4(G_x,F_z)→Γ_2(G_z,F_x)自旋重取向变为HoFe_(0.95)Mn_(0.05)O_3中的Γ4(G_x,F_z)→Γ_1(C_z,A_x)的自旋重取向.磁熵计算表明,虽然在a轴方向得到了-16.7J/kg·K的磁熵变,HoFe_(0.95)Mn_(0.05)O_3的磁熵变显示出明显的各向异性,但是微量Mn的掺杂并未对HoFeO_3的磁熵造成明显的影响.  相似文献   

8.
采用溶胶 凝胶法制备了系列La0 .8-xCa0 .2 MnO3 多晶样品 ,用X射线衍射分析确定了样品的钙钛矿结构 ,用透射电子显微镜观察了样品的形貌及粒径分布情况 ,用PAR15 5型振动样品磁强计测量了样品的磁性随外场和温度的变化 ,确定样品的居里温度并计算了各样品的磁熵变 .磁测量及计算结果表明制备的各样品的居里温度在180— 2 6 0K的范围内且随焙烧温度和La3 离子空位浓度的不同而变化 ,不同温度焙烧的样品均有较大的磁熵变值 ,其中 110 0℃焙烧的La0 77Ca0 .2 MnO3,多晶样品在 2 40 5K ,H =1 0T的外场下的磁熵变达 3 76J/kg·K ,对实验结果做了定性的分析 .该材料具有较高的居里温度和较大的磁熵变 ,所需外场强度适中 ,电阻率高 ,性能稳定 ,适合做高温磁制冷材料 .  相似文献   

9.
利用固相反应法制备了Ru掺杂La0.7Ca0.2Ba0.1Mn1-xRuxO3(x=0~0.06)的多晶样品,探讨了Ru掺杂对体系结构,输运性质以及磁电阻的影响.多晶X射线衍射证实所有样品均保持简单立方钙钛矿结构.通过零场冷却(ZFC)和加场冷却(FC)下的磁化曲线的测量发现随温度降低样品发生了顺磁(PM)到铁磁(FM)的相变,且样品的居里温度(Tc)随Ru掺杂发生了显著的变化,从x=0.00时的306.7K,下降到x=0.02时的294.3K,紧接着又上升到x=0.04时的302.4K.测得居里温度明显高于La0.7Ca0.2Ba0.1Mn1-xMoxO3体系,而且其磁性也大为增强.由零场和外加磁场H=1T测量得到样品的ρ~T曲线表明随温度降低样品同时发生了从绝缘体到金属的转变,绝缘体-金属转变温度低于相应的居里温度.适量的Ru掺杂降低了样品的电阻率,增强了低温时的磁电阻.  相似文献   

10.
本文采用固相反应法制备了高价态离子Mo掺杂的La0.7Ca0.2Ba0.1Mn1-xMoxO3(x=0,0.01,…,0.06)多晶样品,研究了Mo掺杂对样品的结构、磁性和磁电阻的影响.X射线衍射谱证实所有样品均为具有正交对称性的钙钛矿结构.零场冷却(ZFC)和加场冷却(FCH=0.01T)下其磁化~温度(M~T)曲线的测量表明样品随温度降低发生了从顺磁(PM)到铁磁(FM)的相变,T相似文献   

11.
Magnetic nanowires   总被引:1,自引:0,他引:1  
We review recent developments in the research on magnetic nanowires electrodeposited into pores of membranes. Typical nanowires fabricated by this method have a diameter in the range 30–500 nm for a length of the order of 10 μm, and can be composed of a stack of layers of different metals with thicknesses in the nanometer range (multilayered nanowires). We describe the preparation methods and present typical examples of structural characterization. We review the magnetic properties with examples of results on both arrays of nanowires and isolated nanowires. We then describe the magnetoresistance properties of multilayered nanowires, and their interest for their understanding of the CPP–GMR and the determination of spin diffusion lengths. The last section is an overview on the perspectives of future research.  相似文献   

12.
13.
This study describes a magnetic array, which consists of depositing Fe nanowires on a porous alumina membrane. Such a device can be used as a planar magnetic separator. Its performance for the collection of Fe3O4 nanoparticles is experimentally shown. For magnetization of such iron nanowires in the vertical direction, we propose equations to calculate the theoretical absorption ratio.  相似文献   

14.
We introduce the concept of amplifying the transverse magnetic fields produced and/or detected with inductive coils in magnetic resonance settings by using the reversible transverse susceptibility properties of magnetic nanostructures. First, we describe the theoretical formalism of magnetic flux amplification through the coil in the presence of a large perpendicular DC magnetic field (typical of magnetic resonance systems) achieved through the singularity in the reversible transverse susceptibility in anisotropic single domain magnetic nanoparticles. We experimentally demonstrate the concept of transverse magnetic flux amplification in an inductive coil system using oriented nanoparticles with uni-axial magnetic anisotropy. We also propose a composite ferromagnetic/anti-ferromagnetic core/shell nanostructure system with uni-directional magnetic anisotropy that, in principle, provides maximal transverse magnetic flux amplification.  相似文献   

15.
16.
Magnetic anisotropies in FeCo fine particles   总被引:1,自引:0,他引:1  
 The single-domain particles, especially FeCo fine particles have many applications in magnetic information technology. We have prepared Fe1−xCox fine particles for different x by borohydride method and measured the magnetic and structural properties of the samples. We have then determined the variations of coercivity and anisotropy energy versus x in Fe1−xCox fine particles. The obtained results have been analyzed on the basis of various magnetic anisotropies. Magnetic anisotropies affect the coercivity of the medium for each x   as follows: shape and crystal anisotropies for x=0x=0, surface and crystal anisotropies for x=1x=1, shape, induced and crystal anisotropies for x=0.3x=0.3 and 0.5, and shape and induced anisotropies for x=0.45x=0.45.  相似文献   

17.
Applying the dynamical coherent potential approximation (dynamical CPA) to a model of diluted magnetic semiconductors (DMSs), in which both random impurity distribution and thermal fluctuation of localized spins are taken into account, the spin-polarized band and the carrier spin polarization are calculated for various magnetizations. In order to clarify the role of impurity depth on the occurrence of ferromagnetism, three typical cases are investigated: (a) II-VI DMS, (b) deep impurity level, and (c) strong exchange interaction. The present study reveals that the impurity depth of magnetic ions strongly enhances the carrier spin polarization (CSP) and accordingly, leads to a high Curie temperature. This means that photoinduced ferromagnetism with high Curie temperature can be expected in a DMS with a deep impurity depth and strong exchange interaction.  相似文献   

18.
以氯化铁(FeCl3·6H2O)和氨水(NH3·H2O)为原料,以十六烷基三甲基溴化铵(CTAB)为表面活性剂,采用沉淀法制备了氧化铁磁性微球.所得样品用XRD、SEM及SQUID-VSM等手段进行了表征.结果表明,所得氧化铁磁性微球为斜方六面体结构,其粒径大小在0.5-1.5μm范围,其剩余磁感应强度为0.06emu/g,矫顽力为1700Oe,表现出一定的铁磁性.  相似文献   

19.
We report the study of nonequilibrium magnetic behavior of air stable zero valent iron nanoparticles synthesized in presence of N-cetyl-N,N,N-trimethyl ammonium bromide chelating agent. X-ray photoelectron spectroscopy study has suggested the presence of iron oxides on nZVI surfaces. Zero-field-cooled and field-cooled magnetization measurements have been carried out at 20–300 K and 100 Oe. For field-cooled measurements with 1 h stops at 200, 100 and 50 K when compared with the warming cycle, we found the signature of magnetic memory effect. A study of magnetic relaxation at the same temperatures shows the existence of two relaxation times.  相似文献   

20.
Magnetic binary nanofillers containing multiwall carbon nanotubes (MWCNT) and hercynite were synthesized by Chemical Vapor Deposition (CVD) on Fe/AlOOH prepared by the sol–gel method. The catalyst precursor was fired at 450 °C, ground and sifted through different meshes. Two powders were obtained with different particle sizes: sample A (50–75 μm) and sample B (smaller than 50 μm). These powders are composed of iron oxide particles widely dispersed in the non-crystalline matrix of aluminum oxide and they are not ferromagnetic. After reduction process the powders are composed of α-Fe nanoparticles inside hercynite matrix. These nanofillers are composed of hercynite containing α-Fe nanoparticles and MWCNT. The binary magnetic nanofillers were slightly ferromagnetic. The saturation magnetization of the nanofillers depended on the powder particle size. The nanofiller obtained from powder particles in the range 50–75 μm showed a saturation magnetization 36% higher than the one formed from powder particles smaller than 50 μm. The phenomenon is explained in terms of changes in the magnetic environment of the particles as consequence of the presence of MWCNT.  相似文献   

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