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1.
The electrical transport and magnetization measurements have been carried out on Al-doped polycrystalline intermetallic compounds Dy50−xAlxAg50 (x = 0, 0.3, 0.6, 1.2, 1.8) in a pulsed high magnetic field, in which multi-step magnetization is observed. Partial substitute of non-magnetic Al3+ for Dy3+ ions in the compounds increases the critical magnetic fields and the relative area of the magnetic hysteresis loop, which result from the pinning effect, lattice distortion, the change of coupling strength and dilution effect related to the Al3+ doping.The experimental results indicate that non-magnetic Al3+ ions and induced amorphous phase can pin the rotation and/or growth of magnetic domains, thus, the critical magnetic field can be enhanced by doping non-magnetic ions in the magnetic materials, especially in the permanent magnet materials.  相似文献   

2.
The phase relation, microstructure, Curie temperatures (TC), magnetic transition, and magnetocaloric effect of (Gd1−xErx)5Si1.7Ge2.3 (x = 0, 0.05, 0.1, 0.15, and 0.2) compounds prepared by arc-melting and then annealing at 1523 K (3 h) using purity Gd (99.9 wt.%) are investigated. The results of XRD patterns and SEM show that the main phases in those samples are mono-clinic Gd5Si2Ge2 type structure. With increase of Er content from x = 0 to 0.2, the values of magnetic transition temperatures (TC) decrease linearly from 228.7 K to 135.3 K. But the (Gd1−xErx)5Si1.7Ge2.3 compounds display large magnetic entropy near their transition temperatures in a magnetic field of 0-2 T. The maximum magnetic entropy change in (Gd1−xErx)5Si1.7Ge2.3 compounds are 24.56, 14.56, 16.84, 14.20, and 13.22 J/kg K−1 with x = 0, 0.05, 0.1, 0.15, and 0.2, respectively.  相似文献   

3.
Magnetic and heat capacity measurements have been carried out on polycrystalline Dy1?xErxCo2 solid solutions (0 ≤ x ≤ 0.3). Powder X-ray diffraction at room temperature revealed that all Dy1?xErxCo2 solid solutions consist of the C15 cubic Laves phase MgCu2 type structure. These solid solutions are ferromagnetic with a Curie temperature TC below 138 K. Their Curie temperatures decrease from 138 K for DyCo2 to 106 K for Dy0.7Er0.3Co2. At higher temperatures, all solid solutions are Curie–Weiss paramagnets. Both magnetic and heat capacity measurements showed that all samples undergo a first-order type phase transition at TC from paramagnetic to ferromagnetic state. Heat capacity measurements allowed us to determine the Debye temperature. The magnetocaloric effect has been estimated both in terms of isothermal magnetic entropy change and adiabatic temperature change in magnetic fields up to maximum 3 T.  相似文献   

4.
A novel magnetic nanocomposite of multiwalled carbon nanotubes (MWCNTs) decorated with Co1−xZnxFe2O4 nanocrystals was synthesized successfully by an effective solvothermal method. The as-prepared MWCNTs/Co1−xZnxFe2O4 magnetic nanocomposite was used for the functionalization of P/H hydrogels as a prototype of device to show the potential application of the nanocomposites. The nanocomposites were characterized by X-ray diffraction analysis, transmission electron microscopy and vibrating sample magnetometer. The results show that the saturation magnetization of the MWCNTs/Co1−xZnxFe2O4 magnetic nanocomposites increases with x when the Zn2+ content is less than 0.5, but decreases rapidly when the Zn2+ content is more than 0.5. The saturation magnetization as a function of Zn2+ substitution reaches a maximum value of 57.5 emu g−1 for x = 0.5. The probable synthesis mechanism of these nanocomposites was described based on the experimental results.  相似文献   

5.
The effect of Ca on the microstructure and magnetocaloric effects has been investigated in the La1−xCaxFe11.5Si1.5 (x = 0, 0.1, 0.2 and 0.3) compounds. The introduction of Ca leads to the appearance of minor α-Fe and Ca-rich phases, which affects the actual compositions of the main phases for the Ca containing samples. With increasing the Ca concentration, the Curie temperature TC increases from 183 to 208 K, and the maximum magnetic entropy changes |ΔS| at the respective TC with a magnetic field change from 0 to 5 T are 21.3, 19.5, 16.9, and 11.2 J/kg K for x = 0, 0.1, 0.2, and 0.3, respectively. The nature of the magnetic transition changes from first-order to second-order with an increase in Ca concentration, which leads to a reduction of the hysteresis and a decrease of the magnetic entropy change. However, the relative cooling power for La1−xCaxFe11.5Si1.5 compounds remains comparable with or even larger than that of other magnetocaloric materials over a wide temperature range. The higher TC and the smaller hysteresis in comparison with those of the parent compound suggest that the La1−xCaxFe11.5Si1.5 compounds could be suitable candidates for magnetic refrigerants in the corresponding temperature range.  相似文献   

6.
The SmFe1−xCoxAsO (x = 0 − 0.25) superconductors were synthesized by mechanical alloying (MA) and rapid sintering method with Co atoms doped into FeAs layers to replace the Fe sites. The phase purity and superconducting properties of the samples were characterized by X-ray diffraction, electrical resistivity, magnetic susceptibility and Hall coefficient. All the samples belong to the tetragonal ZrCuSiAs structure type with the grain size in 1-3 μm. The superconducting critical temperature Tc of SmFe0.9Co0.1AsO was 12.5 K, and the structure/SDW transition was suppressed by Co doping. The negative Hall coefficient of SmFe0.9Co0.1AsO indicated the electron conduction in the sample. The charge carrier density is about 2 × 1020 cm−3 at the temperature lower than 150 K, larger than that of SmFeAsO.  相似文献   

7.
The effect of Ni/Cu substitution on the magnetic properties, crystal and electronic structure of the polycrystalline GdNi5−xCux series has been studied. All compounds crystallize in the hexagonal CaCu5 type of crystal structure (space group P6/mmm). The temperature dependence of magnetic phase transition (Tmag) estimated from χAC(T) susceptibility as well as magnetization M(T) below room temperature indicates the maximum for x = 1.0 copper concentration. In the paramagnetic range (above 300 K) the magnetic susceptibilities follow a Curie-Weiss-type dependence. The effective magnetic moments are higher than theoretical value for free Gd3+.From X-ray photoelectron spectroscopy (XPS) data the valence band as well as the core level spectra have been analyzed. The filling of Ni3d band in the GdNi5−xCux system by charge transfer of Gd conduction electrons is revealed by a reduction of the satellite intensities in the Ni2p core level spectrum. The obtained results exhibit that the valence bands at the Fermi level are dominated by hybridized Ni3d and Gd5d states, when Cu3d states are rather localized about 3 eV below the Fermi level. Quite good relation between the magnetic properties and electronic structure has been found.  相似文献   

8.
A series of [(Fe1−xCox)72Mo4B24]94Dy6 (x = 0.1, 0.2, 0.3, 0.4 and 0.5 at.%) bulk metallic glasses (BMGs) in rod geometries with critical diameter up to 3 mm were fabricated by copper mold casting method. This alloy system exhibited good thermal stability with high glass transition temperature (Tg) 860 K and crystallization temperature (Tx) 945 K. The addition of Co was found to be effective in adjusting the alloy composition deeper to eutectic, leading to lower liquidus temperature (Tl). The [(Fe0.8Co0.2)72Mo4B24]94Dy6 alloy showed the largest supercooled liquid region (ΔTx = Tx − Tg = 92 K), reduced glass transition temperature (Trg = Tg/Tl = 0.622) and gamma parameter (γ = Tx/(Tg + Tl) = 0.424) among the present system. Maximum compressive fracture strength of 3540 MPa and micro-Vickers hardness of 1185 kg/mm2 was achieved, resulting from the strong bonding structure among the alloy constituents. The alloy system possessed soft magnetic properties with high saturation magnetization of 56.61-61.78 A m2/kg and coercivity in the range of 222-264.2 A/m, which might be suitable for application in power electronics devices.  相似文献   

9.
The electrochemical corrosion behaviour of a series of ZrNi5−xCox alloys with x=0-4 has been tested using potentiokinetic polarisation technique. The polarisation curves were measured in deaerated 0.5 M sulphate solutions with pH=0.2-7 and in strong alkaline solution of KOH (pH=15). It is shown that the presence of greater amounts of Co in the alloy (x?2) worsens the passivating properties of the alloy in acidified sulphate solutions. On the other hand, in strong alkaline solutions, both low- and high-cobalt alloys undergo stable passivation. The degree of Ni substitution by Co in the alloys does not generally affect the shape of cathodic polarisation curves.  相似文献   

10.
The Ce2Fe17−xMnx (x = 0-2) compounds demonstrate a complex temperature dependence of the magnetocaloric effect MCE, which is inverse in a narrow temperature interval just below Néel temperature TN and normal at higher or lower temperatures. The normal MCE exhibits two peaks in the vicinity of temperatures of ferromagnetic ordering ΘT and TN for compositions x = 0-0.35, 1.3-2 or one peak near TN for antiferromagnets with x = 0.5-1. The maximal change of the peak entropy −SM is about 3 J/kg K in a field of 5 T for the compounds with x = 0-0.5 at T ∼230 K close to TN. The drastic decrease of the MCE, by half, in the Ce2Fe17−xMnx system is traceable to a decrease of the spontaneous magnetization and the helical type of magnetic states in the compounds.  相似文献   

11.
Electrical resistivity studies performed in a wide temperature range across the complete Fe/Co substituted Tb0.27Dy0.73(Fe1−xCox)2 intermetallic series, with a borderline compound Tb0.27Dy0.73Fe2 known as Terfenol-D are presented. Parameters characterizing the dependence of resistivity on temperature, including the Debye temperature, are determined. Residual, phonon and magnetic contributions are separated from electrical resistivity. The magnetic contribution to electrical resistivity is applied to estimate Curie temperatures. Regions of weak and strong ferromagnetism of the transition metal sublattice are evidenced. The Curie temperature increases with x, approaches a maximum for x = 0.3 and reduces across the rest of the series. Some results of electronic band structure calculations using the Full-Potential Linearized Augmented Plane Waves (FLAPW) method are also presented. A distribution function for the densities of 3d states is introduced and a formula to estimate the band splitting energy is proposed. The obtained 3d and 4s band splitting energies for iron, cobalt and average for transition metal are presented. The Curie temperature across the Tb0.27Dy0.73(Fe1−xCox)2 system is described using a formula relating to both the FLAPW calculated magnetic moments and the statistical properties of the substituted transition metal sublattice.  相似文献   

12.
DyCuxGa2−x (x = 0-2.0) compounds have been synthesized; meanwhile, their crystal structure and magnetic properties have been investigated by X-ray diffraction and magnetic measurements. The result shows that the continuous solid-solution series crystallize in three phases, with the structure types of AlB2 (x = 0-0.2), DyCuGe (x = 0.3-0.6) and CeCu2 (x = 0.7-2.0), respectively. The main reason to form the three structure types is considered to be the average atomic radius ratio of R to Cu/Ga. Magnetic-ordering transition of the compounds with x = 0.2-0.6 takes place at about 20 K and 113 K, while those of other compounds only takes place at about 20 K, which is attributed to the change of the near Dy-Dy distances and the ordered substitution of Ga by Cu.  相似文献   

13.
MgGdxFe2−xO4 (x = 0.0, 0.05, 0.1 and 0.15) ferrites, with improved dc resistivity, initial permeability, saturation magnetization, and extremely low relative loss factor, have been synthesized by solid state reaction technique. The microstructures, electric, dielectric and magnetic properties have been investigated by means of X-ray diffraction, Keithley 2611 system, impedance analyzer and VSM respectively. The addition of Gadolinium in Mg ferrite has been shown to play a crucial role in enhancing the electric, dielectric and magnetic properties. The dc resistivity is increased by two orders of magnitude as compared to Mg ferrite. Saturation magnetization has been increased by two times and remnant magnetization has been increased by more than three times due to the doping of Gd3+ ions in Mg ferrite. The relative loss factor was found to have very low values and is of the order of 10−4-10−5 in the frequency range 0.1-30 MHz. The variations of electric, dielectric and magnetic properties of the samples have been studied as a function of frequency and Gd3+ ions concentration measured at room temperature. High resistivity and improved magnetic properties can be correlated with better compositional stoichiometry and the replacement of Fe3+ ions by Gd3+ ions. The mechanisms responsible to these results have been discussed in this paper.  相似文献   

14.
The anisotropy compensation and magnetostrictive properties of Tb1−xHox(Fe0.8Co0.2)2 (0.60 ≤ x ≤ 1.0) alloys have been investigated. The easy magnetization direction (EMD) at room temperature rotates from the 〈1 1 1〉 axis (x ≤ 0.75) to the 〈1 0 0〉 axis (x ≥ 0.90) through an intermediate state 〈1 1 0〉, subjected to the anisotropy compensation between Tb3+ and Ho3+ ions. Composition anisotropy compensation is realized near x = 0.75. The Tb0.25Ho0.75(Fe0.8Co0.2)2 alloy has a minimum anisotropy and a large spontaneous magnetostriction coefficient λ111 (≈740 ppm) at room temperature. The strong 〈1 1 1〉-oriented 1-3 epoxy-bonded composite has been fabricated by curing under a moderate magnetic field. A high low-field magnetostriction of about 400 ppm at 3 kOe is obtained for the 1-3 epoxy/Tb0.25Ho0.75(Fe0.8Co0.2)2 composite with 40-vol% alloy particles, which can be attributed to the low magnetic anisotropy, EMD lying along 〈1 1 1〉 direction, the strong 〈1 1 1〉-textured orientation and the chain structure.  相似文献   

15.
16.
In an effort to improve the electrochemical performance of tin intermetallic phases as electrode active material for lithium-ion batteries, Fe1−xCoxSn2 solid solutions with x = 0.0, 0.25, 0.3, 0.5, 0.6 and 0.8 were prepared by chemical reduction in tetraethylene glycol. Precise control of the synthesis conditions allowed single-phase nanocrystalline materials to be prepared, with particle diameters of about 20 nm and cubic, nanorods, and U-shaped morphologies. The substitution of iron by cobalt induced a contraction of the unit cell volume. The hyperfine parameters of the 57Fe Mössbauer spectra were sensitive to the Co/Fe substitution and revealed a superparamagnetic behaviour. In lithium cells nanocrystalline Fe1−xCoxSn2 active materials delivered reversible capacities above 500 mAh g−1 that depended on the composition and cycling conditions. The intermediate compositions exhibit better electrochemical performance than the end compositions CoSn2 and FeSn2.  相似文献   

17.
The structural, electronic, optical and thermodynamic properties of SrxCa1−xO, BaxSr1−xO and BaxCa1−xO ternary alloys in NaCl phase were studied using pseudo-potential plane-wave method within the density functional theory. We modeled the alloys at some selected compositions with ordered structures described in terms of periodically repeated supercells. The dependence of the lattice parameters, band gaps, dielectric constants, refractive indices, Debye temperatures, mixing entropies and heat capacities on the composition x were analyzed for x = 0, 0.25, 0.50, 0.75 and 1. The lattice constant for SrxCa1−xO and BaxSr1−xO exhibits a marginal deviation from the Vegard's law, while the BaxCa1−xO lattice constant exhibits an appreciable upward bowing. A strong deviation of the bulk modulus from linear concentration dependence was observed for the three alloys. The microscopic origins of the gap bowing were detailed and explained. The composition dependence of the dielectric constant and refractive index was studied using different models. The thermodynamic stability of these alloys was investigated by calculating the phase diagram. The thermal effect on some macroscopic properties was investigated using the quasi-harmonic Debye model. There is a good agreement between our results and the available experimental data for the binary compounds which may be a support for the results of the ternary alloys reported here for the first time.  相似文献   

18.
The magnetic and magnetocaloric properties of Ho4PtMg and Er4PtMg with cubic Gd4RhIn-type structure have been investigated by magnetization and heat capacity measurements. The compounds undergo a second order magnetic phase transition from a paramagnetic to a ferromagnetic state at Curie temperatures of TC ∼ 28 and 16 K for Ho4PtMg and Er4PdMg, respectively. A large reversible MCE was observed around TC for both compounds. For a field change of 0–7 T, the maximum values of magnetic entropy change (−ΔSMmax) are 16.9 and 22.5 J/kg K for Ho4PtMg and Er4PtMg, respectively. The corresponding maximum values of adiabatic temperature change (ΔTadmax) are 5.3 and 6.5 K.  相似文献   

19.
Superconductors Ba1−xKxBiO3 and body-centered double perovskites Ba1−xKxBi1−yNayO3 have been selectively synthesized by a facile hydrothermal route. The appropriate ratio and adding sequence of initial reagents, alkalinity, reaction temperature and time are the critical factors that influence the crystal growth of the compounds. The purity and homogeneity of the crystals were detected by the ICP, SEM, EDX and TEM studies. Magnetic measurements show that the superconducting transition temperatures TC of Ba1−xKxBiO3 decrease from 22 K (for x = 0.35) to 8 K (for x = 0.55) with increasing the K doping level.  相似文献   

20.
The Mn-doped compounds Bi1.4La0.6Sr2CaCu2Oy were prepared by sol-gel method. The structural variation was characterized systematically by X-ray diffraction (XRD), infrared (IR) spectra and Raman scattering spectra, respectively. The electrical and magnetic properties of the compounds were investigated by the temperature dependence of resistivity (R-T) and magnetic hysteresis loop (M (H)) measurements. Results indicate that the subtle change of lattice parameters has taken place in the compounds, which is attributed to CuO2 planes canting and Mn valence alternation. In the condition of preserving Bi-2212 structure, Bi1.4La0.6Sr2CaCu2−xMnxOy compound has optimal resistivity and magnetism at x = 2%, which could provide a candidate as new barrier in Josephson junction in future.  相似文献   

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