首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 551 毫秒
1.
高若瑞  喻伟  费春龙  张悦  熊锐  石兢 《物理学报》2012,61(20):453-459
采用热分解法制备了分散程度高且平均晶粒尺寸为20 nm的CoFe2O4和MnFe2O4复合介质.低温磁化曲线测量显示,制备的复合介质具有软-硬磁交换弹性耦合效应,且合成温度以及软磁和硬磁相的成分比例对磁交换弹性耦合的强度有很大的影响.变温磁测量显示,温度为20K时,复合纳米介质的表面自旋冻结效应导致饱和磁化强度显著增加.Henkel测量显示,对分散的CoFe2O4和MnFe2O4复合介质,磁偶极相互作用占主导作用.  相似文献   

2.
徐庆宇  倪刚  桑海  都有为 《物理学报》1999,48(13):52-55
采用多靶离子束溅射镀膜机制备了一系列不同退火温度的Co35(SiO2)65(体积百分数)颗粒膜样品,发现样品的巨磁电阻效应随着退火温度Ta的升高而单调下降.应用磁力显微镜对样品的磁结构进行了观测,发现随着退火温度的升高,近邻的Co颗粒的磁矩倾向于平行排列,形成磁畴结构,从而导致Co35(SiO2)65颗粒膜巨磁电阻效应单调下降. 关键词:  相似文献   

3.
建立了一种简便的、适用于磁畴模型应用的Tb0.3Dy0.7Fe2 合金本构参数辨识方法. 针对Tb0.3Dy0.7Fe2合金磁畴模型中本构参数不明确且直接实验测试困难的问题, 提出了一种数值计算与实验测试相结合的参数辨识方法. 采用坐标变换与绘制自由能等势曲线相结合的方法, 简化了载荷作用下Tb0.3Dy0.7Fe2 合金内磁畴角度偏转的数值计算, 研究了合金磁畴角度偏转模型的参数依赖性. 在此基础上, 结合简单的实验测试, 建立了Tb0.3Dy0.7Fe2合金各向异性常数K1K2、能量分布因子ω、晶轴取向分布的辨识及修正方法. 该方法能够简单、快速地完成Tb0.3Dy0.7Fe2 合金磁畴模型中本构参数的辨识, 对完善磁致伸缩材料磁畴偏转的数值计算模型非常有意义. 理论分析可为类磁致伸缩材料磁机耦合模型的建立、完善, 以及材料本构参数的辨识、获取提供参考.  相似文献   

4.
利用原位高压同步辐射X射线衍射方法,对尺寸为11 nm的CaF2纳米晶粒进行高压结构相变和压缩特性研究。当压力为12 GPa时,观察到由萤石结构向α-PbCl2结构转变的一次相变,该相变压力点远高于体材料,但略低于粒径更小的CaF2纳米晶体。相比体材料,纳米尺寸的CaF2样品的体弹模量更大,说明其更难被压缩。当压力释放至常压时,11 nm的CaF2纳米晶粒的α-PbCl2型亚稳相结构被保留下来,相变不可逆。分析了影响11 nm CaF2纳米晶粒独特高压行为的原因,判定尺寸效应为主要因素,该尺寸下较高的表面能导致结构稳定性增强和体积模量增加。  相似文献   

5.
罗阳  计齐根  张宁  孙大亮 《物理学报》1989,38(2):333-337
观察了Nd2Fe14B单晶磁畴结构随试样厚度的变化。发现试样厚度存在某个临界值L0,小于此值时,在垂直于e轴表面上的畴纹呈迷宫形,大于此值时,迷宫形条状畴在加宽的同时,其表面出现按一定间隔分布的斑点,此即与基畴反向的锥形畴底部,随试样厚度的进一步增加,基畴宽度和锥形反向畴尺寸也随之增大,后者的数目也增多,甚至出现多重锥形畴结构,本文着重讨论了锥形畴的形成机制,并估算了锥形畸形成所对应的临界厚度L0。此外,根据实验结果,计算了Nd2Fe14B相的畴壁能。 关键词:  相似文献   

6.
姜海青  姚熹  车俊  汪敏强 《物理学报》2006,55(4):2084-2091
采用溶胶-凝胶工艺与原位生长技术,制备了ZnSe/SiO2复合薄膜.X射线衍射分 析表明薄膜中ZnSe晶体呈立方闪锌矿结构.X射线荧光分析结果显示薄膜中Zn与Se摩尔比为1 ∶1.01—1∶1.19.利用场发射扫描电子显微镜观察了复合薄膜的表面形貌,结果表明复合薄 膜表面既存在尺寸约为400nm的ZnSe晶粒,也存在尺寸小于100nm的ZnSe晶粒.利用椭偏仪测 量了薄膜椭偏角Ψ,Δ与波长λ的关系,采用Maxwell-Garnett有效介质理论对薄膜的光学 常数、厚度、气孔率、ZnS 关键词: 2复合薄膜')" href="#">ZnSe/SiO2复合薄膜 光学性质 椭偏光度法 荧光光谱  相似文献   

7.
丁硕  刘玉龙  萧季驹 《物理学报》2005,54(9):4416-4421
对晶粒尺寸在4—80nm范围的纯SnO2纳米颗粒进行了拉曼散射研究.除了SnO2本征拉曼振动峰外,还有几个新的拉曼振动峰和波长在700nm左右的一个发光很强而且峰宽很大的荧光峰被观察到.结果所示,当纳米颗粒尺寸减小时,纳米SnO2颗粒的体相 特征拉曼峰变弱,而由缺陷,表面和颗粒尺寸引起的相关效应呈强势.晶粒尺寸在20nm左右是引起体相拉曼光谱变化的临界尺寸.晶粒尺寸在20nm以下,其体相拉曼峰的发生宽化和峰位移动,以及分别出现在位于571cm-1 的表面振动峰,位于351cm-1 处的界面峰和与表面吸附水分子及氢氧基团的N系列拉曼峰是纳米SnO颗粒的主要特征.这些结果反映了纳米颗粒的微结构变化与颗粒尺寸和表面效应以及它们之间相互作用的信息. 关键词: 2')" href="#">纳米SnO 拉曼光谱 荧光光谱 水分子的吸附  相似文献   

8.
敖琪  张瓦利  张熠  吴建生 《物理学报》2005,54(10):4889-4893
利用磁控溅射法制备了Nd28Fe66B6/Fe50Co50 双层纳米复合磁性薄膜,研究了其结构和磁性.经873K退火处理15min 后,利用x射线衍射仪测定薄膜晶体结构,采用俄歇电子能谱仪估算薄膜厚度和超导量子干 涉仪测量其磁性.磁性测量表明,1)该系列薄膜具有垂直于膜面的磁各向异性.从起始磁化曲 线和小回线的形状特征可知,矫顽力机制主要是由畴壁钉扎控制.2)对于固定厚度(10nm) 层的硬磁相Nd-Fe-B和不同厚度(dFeCo=1—100nm)层软磁相FeCo双层纳米复合 膜,剩磁随软磁相FeCo 厚度的增加快速增加,而矫顽力则减少.当dFeCo=5nm 时 ,最大磁能积达到160×10A/m.磁滞回线的单一硬磁相特征说明,硬磁相Nd -Fe-B层和软磁相FeCo层之间的相互作用使两相很好地耦合在一起.剩磁和磁能积的提高是由 于两相磁性交换耦合所致. 关键词: Nd-Fe-B/FeCo双层纳米复合膜 交换耦合 磁性增强  相似文献   

9.
曾乐贵  刘发民  钟文武  丁芃  蔡鲁刚  周传仓 《物理学报》2011,60(3):38203-038203
用溶胶-凝胶旋涂法在玻璃基底上制备出Nb/SnO2复合透明导电薄膜,利用XRD,SEM,紫外—可见分光光度计,四探针电阻仪等测试方法对Nb/SnO2复合薄膜的结构和物性进行了研究.结果表明: 当Nb含量小于0.99at%时,Nb/SnO2复合薄膜为较纯的四方金红石结构;复合薄膜中晶粒分布均匀,平均尺寸在5—7 nm.当Nb含量小于0.99at%时,Nb/SnO2复合薄膜的电阻率先减小后增大,当Nb含量为0.37at%时 关键词: 溶胶-凝胶法 2复合薄膜')" href="#">Nb/SnO2复合薄膜 结构表征 光电性能  相似文献   

10.
李晓娟  王强 《物理学报》2009,58(9):6482-6486
利用溶胶-凝胶法制备了平均晶粒尺寸在38—1500 nm的系列Bi0.2Ca0.8MnO3多晶样品,研究了它们的结构、电输运性质和磁性.研究结果表明,随着晶粒尺寸的减小,电荷有序逐渐消失、最后被完全压制,导致低温下出现自旋玻璃态.利用马氏体相变图像和表面效应解释了相关现象. 关键词: 钙钛矿锰氧化物 电荷有序 马氏体相变 自旋玻璃  相似文献   

11.
低温固相反应法制备的NiFe2O4纳米颗粒的结构与磁性   总被引:1,自引:0,他引:1       下载免费PDF全文
采用低温固相反应法制备了晶粒尺寸在8—47nm之间的NiFe2O4纳米颗粒系列样品,用X射线衍射仪(XRD)、高分辨中子粉末衍射谱仪、振动样品磁强计和超导量子干涉仪等对样品的晶体结构、宏观磁性和纳米颗粒的表面各向异性进行了分析研究.XRD和中子衍射测量结果显示纳米颗粒的晶格常数略高于块体材料,样品的氧参量表明纳米颗粒的晶格畸变程度没有块体材料严重.相对块体材料,纳米颗粒具有较小的磁化强度、较大的矫顽力和各向异性能密度.纳米颗粒从多畴转变为单畴的临界尺寸约为40nm,超顺磁性临界尺寸约为16nm.  相似文献   

12.
系统研究了衬底为SrTiO3和LaAlO3上的La0.67Ca0.33MnO3薄膜中的矫顽力随厚度和应变的变化。结构分析表明薄膜为(001)方向织构,而且薄膜中的晶粒尺寸随着薄膜厚度的减小而减小。磁测量表明矫顽力先随着膜厚的减小而增加,在t=10-25nm附近到达一极大值。随后,矫顽力随厚度的减小而降低。还得出矫顽力的大小与测量方向有关:t≥25nm (t≤10nm)时,难磁化方向的矫顽力大于(小于)易磁化方向的矫顽力。据此,我们提出:在厚膜(t≥25nm)中,矫顽力变化由畴壁钉扎机制决定;在超薄膜(t≤10nm)中,则与磁畴的形核机制有关。根据t= 5、10、25、400nm的LCMO/STO薄膜的初始磁化曲线,以及t=5,50nm的LCMO/LAO薄膜的小磁滞回线的测量,我们对薄膜中矫顽力机制作了验证,并且还讨论了钉扎和形核机制发生的非均匀区的尺寸。  相似文献   

13.
Herein, a discussion of the effect of deposition temperature on the magnetic behavior of Ni0.5Zn0.5Fe2O4 thin films. The thin films were grown by r.f. sputtering technique on (1 0 0) MgO single-crystal substrates at deposition temperatures ranging between 400 and 800 °C. The grain boundary microstructure was analyzed via atomic force microscopy (AFM). AFM images show that grain size (φ∼70-112 nm) increases with increasing deposition temperature, according to a diffusion growth model. From magneto-optical Kerr effect (MOKE) measurements at room temperature, coercive fields, Hc, between 37and 131 Oe were measured. The coercive field, Hc, as a function of grain size, reaches a maximum value of 131 Oe for φ ∼93 nm, while the relative saturation magnetization exhibits a minimum value at this grain size. The behaviors observed were interpreted as the existence of a critical size for the transition from single- to multi-domain regime. The saturation magnetization (21 emu/g<Ms<60 emu/g) was employed to quantify the critical magnetic intergranular correlation length (Lc≈166 nm), where a single-grain to coupled-grain behavior transition occurs. Experimental hysteresis loops were fitted by the Jiles-Atherton model (JAM). The value of the k-parameter of the JAM fitted by means of this model (k/μo∼50 A m2) was correlated to the domain size from the behavior of k, we observed a maximum in the density of defects for the sample with φ∼93 nm.  相似文献   

14.
We demonstrate ultra-high-resolution magnetic force microscopy images of perpendicular magnetic storage media using carbon nanotube probes coated by ferromagnetic Co90Fe10 films (20, 30, 40, and 50 nm). By optimizing ferromagnetic film thickness (effective tip diameter), we obtained best magnetic domain image with an 40 nm-Co90Fe10-coated tip (50 nm tip diameter) about a lateral detect density of 1200 k flux per inch on perpendicular magnetic storage medium, one of the highest resolutions in MFM imaging reported for this material system and structure. The observed dependence of tip dimension on signal contrast and image resolution was successfully explained by a theoretical analysis indicating that the signal contrast, along with the physical probe-tip dimension, should be taken into account to design magnetic probes tips for high-resolution magnetic force microscopy.  相似文献   

15.
We report the ferroelectric aging effect of dense BaTi0.995Mn0.005O3 ceramics with grain size varying from 2000 nm to 150 nm. Given the identical aging process, it is revealed that the significant aging effect with clear double-hysteresis loop, observed in coarse-grain sample, is substantially suppressed with decreasing grain size. This suppression can be attributed to the reduction of tetragonal distortion and the grain boundary barrier effect in fine-grain sample. Consequently, the weak thermodynamic driving force and the limited kinetic migration are unfavorable to a reversible domain switching, resulting in a normal hysteresis loop in small grained samples.  相似文献   

16.
The microstructure and magnetic properties of Finemet-type Fe72.5Cu1M2V2Si13.5B9 (M=Nb, Mo, (NbMo), (MoW)) alloys have been systematically studied. Results show that the nanocrystalline alloy with M=NbMo has the smallest grain size of about 8 nm. The order of the effect of Nb, Mo and W additions in decreasing the α-Fe grain size in nanocrystalline alloys is Nb>Mo>W. The best DC soft magnetic properties are obtained in the alloy with M=Nb. In the case of AC soft magnetic properties, the Nb alloy also exhibits a very low core loss comparing with typical Finemet alloy. Therefore, the Nb alloy is suitable for use as a transformer core material. In addition, it is shown that a narrow grain size distribution and a uniform dispersion of α-Fe grains in the amorphous matrix are very crucial for the development of new Finemet-type nanocrystalline alloys with good soft magnetic properties.  相似文献   

17.
We doped Ho3+ in CoFe1.95Ho0.05O4 spinel ferrite by mechanical alloying and subsequent annealing at different temperatures (600-1200 °C). We understood the structural and magnetic properties of the samples using X-ray diffraction, SEM, Thermal analysis (TGA and DTA), and VSM measurement. The samples have shown structural stabilization within cubic spinel phase for the annealing temperature (TAN)≥800 °C. Thermal activated grain growth kinetics has been accompanied with the substantial decrease in lattice strain. The gain size dependent magnetism is evident from the variation of magnetic moment, remanent magnetization and coercivity of the material. The paramagnetic to ferrimagnetic transition temperature TC (∼805 K) seems to be grain size independent in the present material. The magnetic nanograins, either single domain/pseudo-single domain (50-64 nm) or multi-domain (above 64 nm) regime, showed superparamagnetic blocking below Tm, which is below TC (805 K) and also well above the room temperature.  相似文献   

18.
ZnFe2O4 nanoparticles with average grain size ranging from 40 to 60 nm behaving superparamagnetic at room temperature have been produced using a low-temperature solid-state reaction (LTSSR) method without ball-milling process. Abnormal magnetic properties such as S-shape hysteresis loops and non-zero magnetic moments were observed. ZnFe2O4 nanoparticles were also synthesized using a NaOH coprecipitation method and a PVA sol-gel method to study the relationship between the preparation processes and the magnetic properties. Spin-glass behavior was observed in the low temperature solid-state reaction produced Zn ferrite in the zero-field cooled (ZFC) measurement. Our work proves that the various preparation methods will to some extent determine the properties of magnetic nanoparticles.  相似文献   

19.
Evolution of structure and magnetocaloric properties in ball-milled Gd5Si2Ge2 and Gd5Si2Ge2/0.1 wt% Fe nanostructured powders were investigated. The high-energy ball-milled powders were composed of very fine grains (70–80 nm). Magnetization decreased with milling time due to decrease in the grain size and randomization of the magnetic moments at the surface. The magnetic entropy change (ΔSM) was calculated from the isothermal magnetization curves and a maximum value of 0.45 J/kg K was obtained for 32 h milled Gd5Si2Ge2 alloy powder for a magnetic field change of 2 T while it was still low in Fe-contained alloy powders. The thermo-magnetic measurements revealed that the milled powders display distribution of magnetic transitions, which is desirable for practical magnetic refrigerant to cover a wide temperature span.  相似文献   

20.
Single domain magnetic CoFe2O4 nanoparticles with spinel structure were prepared by the coprecipitation method. Particles with size of 16, 20, 40 and 60 nm were synthesized by sintering the precursor at 500, 600, 800 and 900 °C, respectively. The magnetic hysteresis measurement of CoFe2O4 particles showed that particles were single domain particles with similar saturation magnetization (∼300 emu/cm3) at room temperature. The zeta potential study of suspensions (CoFe2O4-acetylacetone system) with various particle sizes showed the suspension systems had similar zeta potential values (∼40 mV). The effects of magnetic particle size on the suspension stability characterized by electrophoretic deposition yields and sediment volumes were studied. The suspension stability decreased with an increase in particle size and a flocculation threshold of particle radius a was found at 30 nm. A suspension stability theory approaching to the phenomenon was established. The theory based on the DLVO theory was developed by introducing an extra magnetic interaction force. Dormann model was adopted, in which the magnetic interactions of two spherical nanoparticles were investigated in terms of dipole-dipole interactions. Compared to DLVO, suspension's physical parameters not only zeta potential ζ and the Debye length 1/κ, but also particles' radius a brought about stable to flocculation transition in the theory.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号