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1.
The magnetic properties of nanocomposite melt-spun magnets with composition Sm16−xCo68+xB16 (x=0–10, 2 at% interval) and Sm8Co92−yBy (y=10–18, 2 at% interval) have been studied systematically. Several ribbons were fabricated with a wheel speed of 50 m/s, followed by annealing in the temperature range of 700–800°C for 2.5–40 min. XRD results and magnetization versus temperature curves showed that almost all of the samples were composed of the tetragonal Sm2Co14B and rhombohedral SmCo12B6 phases which are not magnetically hard at room temperature. However, a relatively high coercivity in the range of 3.5–5.5 kOe has been obtained in these samples. The highest coercivity of 5.5 kOe and a very promising β value of −0.28%/°C were obtained in Sm8Co74B18 ribbons annealed at 750°C for 5 min. The high coercivities are attributed to the small grain size of the 2 : 14 : 1 phase, in which the large surface areas enhance its effective anisotropy, and make it uniaxial type.  相似文献   

2.
High field magnetization measurements have been performed to examine the existence of itinerant metamagnetism in exchange-enhanced systems related to YCo2 together with Fe1−x CoxSi. In the Y(CoxFex)2 system, the meta magnetism inherent in YCo2 has been observed in 0.04 x0.07. The transition is not as sharp as in the Y(Co1−xAlx)2 system. Other exchange-enhanced paramagnets Y(CoxCux)2 and Y1−xLaxCox2 and weakly itinerant ferromagnet Fe1−xCoxSi exhibit no metamagnetic transition up to 430 kOe.  相似文献   

3.
In order to investigate the positive and negative pressure effects on superconducting properties for MgCNi3, chemical pressure was applied by means of Zn-doping to Mg site (Mg1−xZnxCNi3) and by substituting Mg with Cd (CdCNi3). The lattice constant decreases (increases) with increasing Zn (Cd) content. In the magnetic measurements, superconducting transition temperature (Tc) is decreasing with increasing Zn content and disappears at x > 0.3. While for CdCNi3, Tc also decreases down to 3.4 K. The result seems not to be fully understandable in the case of CdCNi3 since Tc seems to rise owing to the increase of density of states at Fermi energy caused by lattice expansion.  相似文献   

4.
Polycrystalline samples of M-type hexaferrites BaFe12−2xRuxZnxO19 and BaFe12−2xRuxCoxO19 with 0x0.45 have been prepared by a classical sintering method. The evolutions with x of the cell parameters, the saturation magnetization and the magnetic transition temperature have been measured; in this range of small doping ratios, saturation magnetization and Curie temperature of substituted hexaferrites remain close to those of the undoped BaFe12O19. X-ray diffraction measurements on oriented powders show that a change of magnetocrystalline anisotropy from axial to planar occurs in both cases for a small substituting ratio xc=0.375. Microwave electromagnetic characteristics have been studied on the ceramic samples from 0.1 to 10 GHz. The behaviour of the magnetic losses (μ″) corroborates the anisotropy change when doping; a convolution of the dissipation mechanisms (domain wall motions and gyromagnetism) is obtained for xc. The level of the magnetic losses is discussed in relation with others substituted Ba-hexaferrites.  相似文献   

5.
Finite deformation theory is used to obtain the strain energy density of a tetragonal 2–1–4-type single crystal of the high-temperature superconductor La2−xSrxCuO4. The complete set of second and third-order elastic constants of the high-temperature superconductor La2−xSrxCuO4 (x = 0.16) is calculated by taking into account the interactions between nine nearest-neighbour atoms in the lattice and using Mie–Grüneisen interatomic potential. For the sake of comparison we have also computed the values of these constants for x = 0.13–0.20. The values of third-order elastic constants of La2−xSrxCuO4 (x = 0.13–0.20) are negative and their absolute magnitudes are one order higher than those of the second-order elastic constants.  相似文献   

6.
Successful replacement of B by C in the series MgB2−xCx for values of x upto 0.3 is reported. Resistivity and ac susceptibility measurements have been carried out in the samples. Solubility of carbon, inferred from the observed change in the lattice parameter with carbon content indicates that carbon substitutes upto x=0.30 into the MgB2 lattice. The superconducting transition temperature, Tc measured both by zero resistivity and the onset of the diamagnetic signal shows a systematic decrease with increase in carbon content upto x=0.30, beyond which the volume fraction decreases drastically. The temperature dependence of resistivity in the normal state fits to the Bloch–Gruneisen formula for all the carbon compositions studied. The Debye temperature, θD, extracted from the fit, is seen to decrease with carbon content from 900 to 525 K, whereas the electron–phonon interaction parameter, λ, obtained from the McMillan equation using the measured Tc and θD, is seen to increase monotonically from 0.8 in MgB2 to 0.9 in the x=0.50 sample. The ratio of the resistivities between 300 and 40 K versus Tc is seen to follow the Testardi correlation for the C substituted samples. The decrease in Tc is argued to mainly arise due to large decrease in θD with C concentration and a decrease in the hole density of states at N(EF).  相似文献   

7.
A detailed study of the superconducting state parameters (SSP) viz. electron–phonon coupling strength λ, Coulomb pseudopotential μ*, transition temperature TC, isotope effect exponent and effective interaction strength NOV of ten alkali–alkali binary alloys i.e. Li1−xNax, Li1−xKx, Li1−xRbx, Li1−xCsx, Na1−xKx, Na1−xRbx, Na1−xCsx, K1−xRbx, K1−xCsx and Rb1−xCsx are made within the framework of the model potential formalism and employing the pseudo-alloy-atom (PAA) model for the first time. We use the Ashcroft’s empty core (EMC) model potential for evaluating the superconducting properties of alkali alloys. Five different forms of local field correction functions viz. Hartree (H), Taylor (T), Ichimaru–Utsumi (IU), Farid et al. (F) and Sarkar et al. (S) are used to incorporate the exchange and correlation effects. A considerable influence of various exchange and correlation functions on λ and μ* is found from the present study. Reasonable agreement with the theoretical values of the SSP of pure components is found (corresponding to the concentration x = 0 or 1). It is also concluded that nature of the SSP strongly depends on the value of the atomic volume Ω0 of alkali–alkali binary alloys.  相似文献   

8.
The perovskite-type oxides were synthesized in the series of Ln1−xSrxCoO3(Ln = Sm, Dy). The formation of solid solutions in Dy1 − xSrxCoO3 was limited, compared with that in Sm1 − xSrxCoO3. The electrical conductivities of the sintered samples were measured as a function of x in the temperature range 30 to 1000 °C. The highest conductivity of around 500 S/cm at 1000 °C was found in Sm0.7Sr0.3CoO3. The reactivity of all the samples with YSZ was examined at 800–1000 °C for 96 h. The Sr-doped perovskite oxides were more reactive with YSZ and produced SrZrO3 at 900 °C after 96 h. However, no reaction product between SmCoO3 and YSZ was observed at 1000 °C for 96 h. The cathodic polarization of the oxide electrodes, sputtered on yttria stabilized zirconia (YSZ), was studied at 800–1000 °C in air. SmCoO3 shows no degradation of the electrode performance at higher temperatures. The thermal expansion measurements on the sintered samples were carried out from room temperature to 1000 °C. Large thermal expansion coefficients were found in these samples.  相似文献   

9.
IIIVxN1−x ternary alloys are promising materials for their applications in light-emitting devices in the range of wavelength from ultra violet to the infrared ray due to the large bowing of band gap energy. In this paper, molecular dynamical method was used to calculate the solubility of phosphorus in GaN by using the Gibbs free energy and the dielectric theory. The calculation results show that the content of P in GaN varies with the growth temperature, which may be larger than 25% in the N-rich GaPxN1−x or less than 90% in the P-rich GaPxN1−x, at the growth temperature of about 1500 K. We compared our theoretical results with those reported in references. By using light-radiation heating together with low-pressure metal-organic chemical vapor deposition, and ion implantation techniques, we have successfully synthesized N-rich (x < 0.17) and P-rich GaPxN1−x (x > 0.90) compounds.  相似文献   

10.
The n = 2 Aurivillius phase Bi2 − xPbxSr1 − xNd2O9 was successfully synthesized as a ceramic material over the whole range of simultaneous, charge compensated substitution x = 0–1.0. Structural investigations were performed by Rietveld refinement applying different space groups Fmmm and A21am, and additionally by X-ray absorption spectroscopy (EXAFS) on the Nd LIII-edge, confirming the accommodation of Nd on the atomic sites of Sr, which implies the substitution of Bi3+ by the isoelectronic Pb2+. The ferroelectric transition temperature Tc = 270 °C of the substituted powders with x = 0.4 and 1.0 is distinctly reduced compared to the unsubstituted sample with Tc = 450 °C. In temperature resolved powder X-ray diffraction patterns no structural phase transition could be detected.  相似文献   

11.
Oxide ion conductivity of the pure and aliovalent ion substituted rare-earth pyrohafnates in the series RE2−xSrxHf2O7 and RE2Hf2−xAlxO7 (RE=Gd and Nd; x=0–0.2) has been explored in the temperature range 400°C–700°C for the first time. It is seen that, conductivity is enhanced by doping 5 atom% Sr at the rare–earth site in these systems. Well defined impedance plots due to grain interior and grain boundary resistances were obtained in the Gd pyrohafnate with Sr substitution. The results of the conductivity variation for the pure, Sr and Al doped phases are explained on the basis of pyrochlore structure.  相似文献   

12.
Powder X-ray diffraction (XRD) analysis showed that the single phase perovskite-type structure of Ba1−xLaxCe0.90−xY0.10+xO3− (0 x 0.40, =0.05) could be maintained in a wide region of doping level by simultaneous partial substitution of La3+ for Ba2+-site and Y3+ for Ce4+-site in BaCeO3. The conduction properties of these oxides were investigated using various electrochemical methods in the same concentration of oxygen vacancy (=0.05). At high oxygen partial pressure, these oxides exhibited a mixed oxide ionic and p-type electronic conduction while at low oxygen partial pressure their conduction was almost protonic. Among these oxides, BaCe0.90Y0.10O3− exhibited the highest conductivities with a value of 1.24×10−1 S/cm in dry oxygen, and 5.65×10−2 S/cm in wet hydrogen at 1000°C. Both of the proton and oxide ion conductivities under oxygen and under hydrogen atmospheres decreased monotonically with the increasing substitution for Ba2+- and Ce4+-sites. The decreases in ion conductivities appear to relate to the decreased free volume (Vf) of crystal lattice as well as the increased distortion of lattice from ideal cubic perovskite structure.  相似文献   

13.
On the basis of chemical, thermal analysis and Cu K-edge X-ray absorption measurements, oxygen content in the Nd1+xBa2−xCu3Oz solid solution was determined between 1000°C in air and 400°C in oxygen for x=0.05–0.9 compositions. It has been observed that the oxygen nonstoichiometry Δz of the Nd1+xBa2−xCu3O7+x/2−Δz solid solution decreases 2–2.5 times for a large substitution (Δz≈0.3–0.33 for x=0.9), despite of the acclaimed higher total oxygen content. The difference in nonstoichiometry is explained by a higher average value of the copper oxidation state (ACV), which is vital for the solid solution with large x even at elevated temperatures (ACV≈2–2.05 for x>0.3 at 1000°C, PO2=0.21 atm). On the contrary, the ACV after complete oxygenation is almost constant (about 2.25–2.3) for the whole series. The x-dependence of the oxygen content is not monotonous and structural phase transitions can be observed at x=0.3 and x=0.6, as confirmed by the X-ray diffraction and the Raman scattering spectroscopy. The first well-known transition is connected with the oxygen disorder due to the Nd substitution for Ba at random Ba-sites. In the present work, it is proved by the apical oxygen mode broadening in Raman spectra. Ordering of the Nd and Ba atoms with a subsequent orthorhombic distortion of the lattice may occur even at 1000°C in air due to the second transformation at x≈0.6. The invariable orthorhombicity of the Nd-rich solid solution with x>0.6 is not caused by the oxygen absorption as in the x=0.05 case. Existence of high- and low-temperature orthorhombic modifications of this solid solution has been observed for the first time. Finally, a tentative 3D (zxT) diagram is suggested for the Nd1+xBa2−xCu3Oz solid solution up to 1000°C in air, including the new x=0.6–0.9 region.  相似文献   

14.
Mixed oxides in the system S-Ce-Co-O were prepared by solid state reaction and by freeze-drying of precursor compounds followed by thermal treatment. Two types of perovskite oxides exist in the system: Solid solutions of the type Sr1 − yCeyCoO3 − x and mixed oxides of the type (1 − y)SrCeO3 − ySrCoO3 − x. Microstructures and phase compositions were determined by electron microscopy and X-ray diffraction. SrCoO3 − x forms a solid solution of ceria on the A-site in the strontium cobaltite lattice up to 0.15 mol Ce. This solid solution corresponds to the high-temperature structure of pure SrCoO3 − x and is characterized by high oxygen exchange and electrical conductivity. The oxygen deficiency x was measured by solid electrolyte coulometry. The oxygen deficiency of solid solutions Sr1 − yCeyCoO3 − x increases with temperature and decreases with pO2 in the ambient atmosphere and with increasing Ce dopant concentration. The pO2-T-x diagram of the solid solution was determined. The T, pO2 and dopant concentration dependencies of electrical conductivity were measured by a four-point d.c. technique. By Ce doping strontium cobaltite becomes a stabilized high-conductive material (maximum conductivity: 500 S cm−1 at 400 °C, Ea = 0.025 eV, p-type). Above this temperature the T-coefficient of the conductivity changes from positive (semiconducting) to negative values.  相似文献   

15.
The effect of Cd doping on transport, magnetotransport, and magnetic properties has been investigated in the perovskite La1−xCdxMnO3 (0x0.5) systems. The ρ(T) curves exhibit a sharp metal insulator transition (Tp1), which is close to paramagnetic to ferromagnetic transition (Tc) obtained from MT curves for all samples. In addition, ρ(T) curves for Cd doped samples exhibit another broad transition (TP2) below Tp1. This transition becomes more prominent and the transition temperature (Tp2) shifts to lower temperature with increasing Cd content. Such double peak behavior in the ρ(T) curve is attributed to the phase separation between the ferromagnetic metallic phases and the ferromagnetic insulating phases induced by the electronic inhomogeneity in the samples.  相似文献   

16.
By undertaking AC electrochemical impedance experiments on yttria stabilised zirconia electrolytes with polished Y1Ba2Cu3O7−x electrodes, the activation energy for oxygen ion transport within the bulk of Y1Ba2Cu3O7−x, in air, over the temperature range 823 K–1043 K, was determined to be 1.50 ± 0.05 eV. At 1000 K the oxygen ionic conductivity was calculated to be around one order of magnitude lower than that in yttria stabilised zirconia. Typical calculated values were σ=5×10−5 (ω cm)−1 and 6×10−3 (ω cm)−1 at the respective temperatures 823 K and 1043 K. By employing a similar cell but with Y1Ba2Cu3O7−x paste electrodes, oxygen transfer between the Y1Ba2Cu3O7−x and the electrolyte was found to occur via a surface diffusional processes. Over the temperature range 873 K–1098 K, in air, the activation energy for in-diffusion at the surface was found to be 1.4±0.1 eV and that for out-diffusion at the surface to be 1.76±0.05 eV.  相似文献   

17.
We report the influence of the Sn doping on the magnetotransport properties of the LaMnO3+δ perovskite. Two series of samples with nominal LaSnxMn1−xO3+δ (I series) and La(1−x)/(1+x)SnxMn1−xO3+δ (II series) compositions (x=0, 0.025, 0.05 and 0.10) were prepared at Ts=750°C. The M(T) data under 0.01 and 0.5 T for the I series reveal a depressed magnetization as the Sn content increases suggesting the presence of magnetic clusters with a superparamagnetic behavior. Resistivity measurements indicate an insulator material for all Sn content independently of the applied magnetic field. On the contrary, for the II series the M(T) and M(H) data reveal FM behavior and an improvement of the magnetization as Sn increases. These samples show magnetoresistance. The magnetotransport properties are discussed in terms of the presence of A-site cation vacancies.  相似文献   

18.
The effects of Yb addition on the phase evolution and superconducting properties of (Bi,Pb)-2212 superconductor prepared by solid state synthesis in the polycrystalline form were studied. Yb content of the samples was varied (x = 0–0.5) on a general stoichiometry of Bi1.7Pb0.4Sr2.0Ca1.1Cu2.1YbxOy. Phase analysis by XRD, microstructural examination by SEM, measurements of density and superconducting properties were done to evaluate the relative performance of the samples. A Yb containing secondary phase could be distinguished from XRD analysis from Yb > 0.3 in the stoichiometric level. Microstructural examination showed clear and distinct morphological variation with Yb stoichiometry and a secondary phase with round edged grains was observed in the microstructure of Yb added samples. The critical current density (JC) and superconducting transition temperature (TC) of all the Yb added samples were found to be higher than that of the pure sample. A maximum TC-onset of 94.5 K and a maximum JC 688 A/cm2 has been observed for the sample with Yb = 0.2 in the stoichiometric level. Above this level TC and JC began to reduce, may be due to secondary phase formation.  相似文献   

19.
The magnetic phase diagram of La2(Cu1−xZnx)O4 has been determined from zero-field muon-spin-rotation (ZF-μSR) data taken at LAMPF for 0 ≤ x ≤ 0.10. Antiferromagnetic onset temperatures follow TN(x) from susceptibility measurements on the same samples. However, the order becomes long range, as evidenced by a well-defined internal magnetic field, only at temperatures well below TN. Extrapolation of our results yields TN → 0 K at x = 0.11 for a single (Cu1−xZnx)O2 plane, and comparison with YBa2(Cu1−xZnx)3O6 implies identical disruption of magnetism by Zn doping in the single- and double-plane systems.  相似文献   

20.
The electronic and magnetic properties of Cu-doped perovskite La0.7Ca0.3Mn1−xCuxO3 obtained by doping Cu on its Mn sites have been studied. The perovskite structure was found to remain intact up to the highest doping level of x=0.20. At low Cu concentration (x=0.05) the temperature-dependence of resistivity of the material exhibited up to two peaks corresponding to the magnetic transitions from the PM to the FM phase, and from the FM to the AFM phase. In general, the doping level was found to suppress the ferromagnetic ordering of the material, increase its resistivity, and produce large values of magnetoresistance near the resistivity peak. These results were explained as due to the formation of the antiferromagnetic phase.  相似文献   

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