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1.
合成了 (Nd1 -xErx) 3Fe2 5Cr4 . 0 (0≤x≤ 1 .0 )系列化合物并采用x射线衍射和磁测量等手段研究了它们的结构和磁性 .发现当 0≤x≤ 0 . 8时化合物保持Nd3(Fe,Ti) 2 9型结构 ,属于单斜晶系 ,A2 m空间群 ,当 0 8相似文献   

2.
合成了ErFe29-x-yCoxMy化合物(M=Cr, V, Ti, Mn, Ga, Nb )并用x射线衍射和磁测量等手段研究了它们的结构和磁性. 发现Fe基Er(Fe,M)29化合物结晶成哑铃对Fe-Fe无序替代的Th2Ni17型结构(P63/mmc空间群)而不能形成Nd3(Fe,Ti)29型结构,因此其化学式也可以用Er2-n(Fe,M)17+2n (n=0.2)表示. 当ErFe29化合物中部分Fe原子被M原子所取代时,其居里温度均有一定程度的提高. 所有Er(Fe,M)29化合物在室温均为易面型各向异性. 当Er(Fe,M)29 (M=Cr, V)中的部分Fe原子被Co原子取代且Co原子数与Fe原子数达到一定比值时,得到一个单斜结构的新相. 磁测量表明ErFe19.5Co6V3.5在室温可能为单轴各向异性,在162K出现自旋重取向,其各向异性由易轴型变为易面型. 在5K下于难磁化方向磁化时观察到一个一级磁化过程(FOMP). 关键词: 稀土金属间化合物 晶体结构 磁晶各向异性  相似文献   

3.
Er3(Fe,Co,M)29化合物(M=Cr,V,Ti,Mn,Ga,Nb)的结构与磁性   总被引:1,自引:0,他引:1       下载免费PDF全文
合成了Er3Fe29-x-yCoxMy化合物(M=Cr,V,Ti,Mn,Ga,Nb)并用x射线衍射和磁测量等手段研究了它们的结构和磁性.发现Fe基Er3(Fe,M)29化合物结晶成哑铃对Fe-Fe无序替代的Th2Ni17型结构(P63/mmc空间群)而不能形成Nd3(Fe,Ti)29型结构,因此其化学式也可以用Er2-n(Fe,M)17+2n(n=0.2)表示.当Er3Fe29化合物中部分Fe原子被M原子所取代时,其居里温度均有一定程度的提高.所有Er3(Fe,M)29化合物在室温均为易面型各向异性.当Er3(Fe,M)29(M=Cr,V)中的部分Fe原子被Co原子取代且Co原子数与Fe原子数达到一定比值时,得到一个单斜结构的新相.磁测量表明Er3Fei95Co6V3.5在室温可能为单轴各向异性,在162K出现自旋重取向,其各向异性由易轴型变为易面型.在5K下于难磁化方向磁化时观察到一个一级磁化过程(FOMP).  相似文献   

4.
通过X射线衍射和磁性测量等手段研究了(Nd1-xGdx)3Fe27.31Ti1.69(0≤x≤0.6)化合物的结构和磁性.X射线衍射测量结果表明Gd替代后并未改变Nd3(Fe,Ti)29化合物的晶体结构,但引起了晶胞体积收缩.随着Gd含量的增加,化合物的居里温度TC和室温磁晶各向异性场Ba单调增加,而自旋重取向 关键词: 1-xGdx)3Fe27.31Ti1.69化合物')" href="#">(Nd1-xGdx)3Fe27.31Ti1.69化合物 磁晶各向异性 自旋重取向 磁相图  相似文献   

5.
通过X射线衍射和磁性测量等手段研究了Er2(Fe1-xCox)15Ga2化合物的结构与磁性,重点讨论了它们的磁晶各向异性.实验结果表明,Er2(Fe1-xCox)15Ga2化合物均为Th2Ni17型六角结构,晶格常数a,c和单胞体积V随Co含量的 关键词:  相似文献   

6.
沈保根  孔麟书  曹蕾 《物理学报》1993,42(6):999-1005
用快速急冷方法制备了(Er1-xSmx)2Fe17Cy(x≤0.8,1.5≤y≤2.5)化合物,它们具有菱方Th2Zn17型结构,并且在高温是稳定的。与相应的不含C的(Er1-xSmx)2Fe17化合物比较,当C含量y=2.5时,引起单胞体积增加~6.3%,居里温度增  相似文献   

7.
用三弧Czochralski法和真空电弧熔炼法制备了Ho2Co17-xSix化合物.通过X射线衍射和磁性测量手段研究了化合物的结构与内禀磁性.重点讨论了磁晶各向异性和自旋重取向转变.实验结果表明,Ho2Co17为Th2Ni17型六角结构,在05≤x≤3的化合物均为Th2Zn17型菱方结构,能够获得单相2∶17型化合物的最大Si含量是x=3.在x≤2的浓度范围,化合物的易磁化方向垂直于c轴.随Si含量增加,化合物的居里温度和Co原子平均磁矩单调减少.根据Ho2Co17-xSix化合物的居里温度和自旋重取向温 关键词:  相似文献   

8.
(Nd1-xErx)2Co15.5V1.5的结构转变与磁性   总被引:1,自引:0,他引:1       下载免费PDF全文
利用电弧熔炼制备了(Nd1-xErx)2Co15.5V1.5(x=0—1.0)化合物样品.通过x射线衍射分析和磁性测量研究了Er替代Nd2Co15.5V1.5中的Nd时对化合物结构和磁性的影响.研究结果表明,低Er含量(x<0.4),化合物为Th2Zn17型结构;高Er含量时(x>0.),化合物转变为Th2Ni17结构;Er含量为x=0.4和0.5时,两种结构共存.两种结构的晶胞参数a,c和晶胞体积V随着Er含量的增加都呈现递减的趋势.随着Er含量的增加,(Nd1-xErx)2Co15.5V1.5化合物的 关键词: (Nd1-xErx)2Co15.5V1.5 结构转变 磁性  相似文献   

9.
郝延明  王玲玲  严达利  安力群 《物理学报》2009,58(10):7222-7226
通过X射线衍射、磁测量等手段对电弧炉制备的不同热处理条件的Sm2Fe17-xCrxx=1—3)化合物的结构和磁性进行了研究.结果表明1050 ℃下退火5 d的Sm2Fe17-xCrxx=1—3)化合物具有菱方相的Th2Zn17型结构,同样温度下退 关键词: 2Fe17-xCrx化合物')" href="#">Sm2Fe17-xCrx化合物 磁体积效应 居里温度 磁晶各向异性  相似文献   

10.
冯全源  任朗 《物理学报》2000,49(1):152-154
用标准陶瓷工艺制备了BaZn2(GeMn)0-2Fe15-6O27六角铁氧体.假设Ge4+取代了4e和4fⅣ中的Fe3+,能够很好地解释实验结果.利用分子场理论和H.B.Callen单离子各向异性模型计算了BaZn2(GeMn)0-2Fe15-6O27次点阵之间的交换参数和各次点阵对磁晶各向异性的贡献,并对实验结果进行了拟合.结果表明,12k和2d次点阵对磁晶各向异性有较大的贡献 关键词:  相似文献   

11.
We have synthesized and investigated physical properties of two new quaternary compounds Gd2CoAl4T2 (T= Si, Ge) single crystals, which are isostructural to Tb2NiAl4Ge2 and Er2CoAl4Ge2. The most important structural feature of these materials is the anti-CaF2-type CoAl4T2 slabs. These materials show metallic behavior below 300 K and there is a long-range antiferromagnetic (AFM) transition appearing at 20 and 27 K for Gd2CoAl4Ge2 and Gd2CoAl4Si2, respectively. Resistivity and heat capacity measurements also confirm these bulk AFM transitions. Further analysis indicates that this long-range antiferromagnetism should result from the magnetic interaction between local moments of Gd3+ ions.  相似文献   

12.
通过室温下的中子衍射和磁性测量对多晶样品Nd0.5Sr0.4Pb0 .1MnO3 的结构和磁性进行了实验研究.中子衍射结果表明,该样品具有正交的钙钛矿结构,空间群 是Pnma,即结构发生了晶场畸变.由M-T和R-T曲线可知,居里温度TC=273 K ,其特征是随着温度的增加样品经历了从铁磁金属态转变到顺磁半导态,且转变温度T p=225 K;用锰氧化物晶场和双交换作用的竞争解 关键词: 结构 磁性 中子衍射 晶场畸变 p')" href="#">转变温度Tp 双交换作用  相似文献   

13.
The infrared (IR) and 57Fe-Mössbauer spectra of Fe3IIFe4III(AsO4)6 were recorded and analyzed on the basis of its structural characteristics. The IR spectrum presents a high complexity, showing an important number of bands and splittings, as a consequence of the presence of three structurally independent AsO43− groups. The analysis of the four quadrupole signals shown by the Mössbauer spectrum allowed to attain a detailed insight into the cation distribution over the available crystallographic sites. The alternating current susceptibility measurements indicate a paramagnetic to ferrimagnetic transition in the material at about 59 K.  相似文献   

14.
A modified Yafet-Kittle model is applied to investigate the magnetic properties and magnetic phase transition of the intermetallic compound GdMn_2Ge_2. Theoretical analysis and calculation show that there are five possible magnetic structures in GdMn_2Ge_2. Variations of external magnetic field and temperature give rise to the first-order or second-order magnetic transitions from one phase to another. Based on this model, the magnetic curves of GdMn_2Ge_2 single crystals at different temperatures are calculated and a good agreement with experimental data has obtained. Based on the calculation, the H-T magnetic phase diagrams of GdMn_2Ge_2 are depicted. The Gd-Gd, Gd-Mn, intralayer Mn-Mn and interlayer Mn-Mn exchange coupling parameters are estimated. It is shown that, in order to describe the magnetic properties of GdMn_2Ge_2, the lattice constant and temperature dependence of interlayer Mn-Mn exchange interaction must be taken into account.  相似文献   

15.
The magnetic properties of trigonal Nd0.9Dy0.1Fe3(BO3)4 substituted compound with the competitive Nd-Fe and Dy-Fe exchange interactions have been investigated. It has been shown that in Nd0.9Dy0.1Fe3(BO3)4 a spontaneous spin-reorientation transition from an ease-axis state to an easy-plane occurs near 8 K. Anomalies of the magnetization curves are observed in a spin-flop transition induced by the magnetic field B‖c. The calculations were performed using a molecular-field approximation and a crystal-field model for the rare-earth subsystem. Extensive experimental data on the magnetic properties of Nd0.9Dy0.1Fe3(BO3)4 have been interpreted and good agreement between theory and experiment has been achieved using the obtained theoretical dependences.  相似文献   

16.
A systematic study of the formation, structure and magnetic properties of (Nd,Dy)3Fe27.5(Ti,Mo)1.5 compounds has been performed. Rietveld analyses of the X-ray patterns of the samples indicate that the concentrations of Ti and Mo affect the formation and structural properties slightly, whereas different rare-earth (Nd and Dy) contents influence them significantly. It is found that high Dy contents make it difficult to form the 3:29-type structures. The Curie temperatures of Nd2.1Dy0.9Fe27.5Ti1.5−xMox decrease monotonically as more Ti was replaced by Mo but their saturation magnetizations remain almost unchanged; in contrast, for Nd3−yDyyFe27.5TiMo0.5, their saturation magnetizations decrease monotonically with increasing Dy contents while their Curie temperatures are constant.  相似文献   

17.
The study by X-ray diffraction, calorimetry, vibrational and impedance spectroscopy of CsH(SO4)0.76(SeO4)0.24 new solid solution is presented. Crystals of this composition undergo two phase transitions at T = 333 and 408 K. The last one at 408 K is a superionic-protonic transition (SPT) related to a rapid [HS(Se)O4] reorientation and fast H+ diffusion. A sudden jump in the conductivity plot confirms the presence of this transition. Above 408 K, this high temperature phase is characterized by high electrical conductivity (7 × 10t-3 Ω cm−1) and low activation energy (Ea < 0.3 eV).  相似文献   

18.
Measurements of the molar magnetic susceptibility (Xm) of a powdered sample of Nd2(WO4)3 in the temperature range 300–900 K, and the electrical conductivity (σ) and dielectric constant (?)? of pressed pellets of the compound in the temperature range 4.2–1180 K are reported. Xm obeys the Curie-Weiss law with a Curie constant C= 3.13 K/mole, a paramagnetic Curie temperature θ= ?60 K and a moment of Bohr magnetons, p= 3.49 for the Nd3+ ion. The electrical conductivity data can be explained in terms of the usual band model and impurity levels. Both the σ and ?$?data indicate some sort of phase transition round 1025 K. The conductivity follows Mott's law σ = A exp (?B/T14) in the temperature range 200 < T < 3000 K with B = 45.00 (K)14and A = 1.38 × 10?5 Ω?1cm?1. The dielectric constant increases slowly up to 600 K, as is usual for ionic solids. The increase becomes much faster above 600 K, which is attributed to space-charge polarization of thermally generated charge carriers.  相似文献   

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