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1.
结合高能球磨和高温高压实验技术,制备了块体TiN/TiB2纳米复合材料。通过X射线衍射和拉曼光谱对材料的微观结构进行了研究。结果表明,采用金属Ti和六方BN为原料,在球磨过程和高温高压实验过程中,TiN先于TiB2形成,球磨70 h后有少量的纳米晶TiN开始形成。在高温高压实验中,在样品腔的合成温度低于1 300 ℃时,没有TiB2出现;当温度达到1 300 ℃后,合成出了TiN和TiB2的复合材料。对所合成的块状材料的热膨胀性和导电性能进行了测试。 相似文献
2.
We have performed a series of neutron diffraction experiments from the magnetic order and the vortex lattice in single crystal
ErNi2B2C. The incommensurate magnetic structure develops additional even harmonics below the ‘ferromagnetic’ ordering temperature,
T
F of 2.3 K. This feature and the existence of rods of diffuse scattering suggest the development of ferromagnetic microdomain
walls. The magnetic structure is very sensitive to the application of a magnetic field with changes in modulation vector and
harmonic content. Studies of the vortex lattice show the presence of a 45° reorientation transition and a distorted hexagonal
to square transition as a function of applied field. Further distortions of the vortex lattice occur at T
N, but no changes are seen at T
F. 相似文献
3.
We have performed extensive small-angle neutron scattering (SANS) diffraction studies of the vortex lattice in single crystal
YNi2B2C for B‖c. High-resolution SANS, combined with a field-oscillation vortex lattice preparation technique, allows us to separate Bragg
scattered intensities from two orthogonal domains and accurately determine the unit cell angle, β. The data suggest that upon increasing field there is a finite transition width where both low- and high-field distorted
hexagonal vortex lattice phases, mutually rotated by 45°, coexist. The smooth variation of diffracted intensity from each
phase through the transition corresponds to a redistribution of populations between the two types of domains. 相似文献
4.
D. Jaiswal-nagar D. Pal M. R. Eskildsen P. C. Canfield H. Takeya S. Ramakrishnan A. K. Grover 《Pramana》2006,66(1):113-129
We present a study of magnetization measurements performed on the single crystals of YNi2B2C and LuNi2B2C. For both the compounds, we find flux jumps in magnetisation values in the respective field regions, where the structural
transitions in the flux line lattice symmetry have been reported in these systems via the small angle neutron scattering experiments.
The magnetisation hysteresis loops and the AC susceptibility measurements show pronounced peak effect as well as second magnetisation
peak anomaly for both YNi2B2C and LuNi2B2C. Based on these results, a vortex phase diagram has been constructed for YNi2B2C forH∥c depicting different glassy phases of the vortex matter. 相似文献
5.
Coexistence of superconductivity and magnetic order has been one of the exciting aspects of the quaternary borocarbide superconductors,
So far, RNi2B2C (R=Tm, Er, Ho and Dy) are the only known magnetic superconductors in this family. Here, we present our resistivity, magnetization
and heat capacity studies on NdPt2B2C (nominal composition, NdPt1.5Au0.6B2C and NdPt2.1B2.4C1.2). We find superconductivity in both samples with T
c,onset ∼ 3 K. Bulk magnetic order is found to occur below 1.7 K. We suggest that NdPt2B2C is a possible magnetic superconductor. 相似文献
6.
Synthesis of large diamond crystals containing high-nitrogen concentration at high pressure and high temperature using Ni-based solvent by temperature gradient method 下载免费PDF全文
This paper reprots that with Ni-based catalyst/solvent and with a dopant of NaN 3,large green single crystal diamonds with perfect shape are successfully synthesized by temperature gradient method under high pressure and high temperature in a China-type cubic anvil high-pressure apparatus (SPD-6×1200),and the highest nitrogen concentration reaches approximately 1214-1257 ppm calculated by infrared absorption spectra.The synthesis conditions are about 5.5 GPa and 1240-1300 C.The growth behaviour of diamond with high-nitrogen concentration is investigated in detail.The results show that,with increasing the content of NaN 3 added in synthesis system,the width of synthesis temperature region for growth high-quality diamonds becomes narrower,and the morphology of diamond crystal is changed from cube-octahedral to octahedral at same temperature and pressure,the crystal growth rate is slowed down,nevertheless,the nitrogen concentration doped in synthetic diamond increases. 相似文献
7.
Wide-line proton NMR studies on polycrystalline tetramethylammonium tetrachlorozincate have been carried out at high hydrostatic pressures up to 15 kbar in the temperature range 77-300 K and at ambient pressure down to 4.2 K. A second-moment transition is observed to occur starting around 161 K, the temperature for the V-VI phase transition. This transition temperature is seen to have a negative pressure coefficient up to 2 kbar, beyond which it changes sign. At 77 K the second moment decreases to 4 kbar and then increases again as a function of pressure. The results are explained in terms of the dynamics of the N(CH3)4 groups. 相似文献
8.
AbstractA theoretical investigations on the structural stability and mechanical properties of Be3N2 crystallising in α and β phases was performed using first-principles calculations based on density functional theory. The obtained ground state structure and mechanical properties are in excellent agreement with the available experimental and theoretical data. A full elastic tensor and crystal anisotropy of Be3N2 in two phases are determined in the wide pressure range. Results indicated that the two phases of Be3N2 are mechanically stable and strongly pressure dependent in the range of pressure from 0 to 80 GPa. The superior mechanical properties show that the two phases of Be3N2 are potential candidate structures to be the hard material. And the α-Be3N2 has better mechanical properties than β-Be3N2. By the calculated B/G ratio, it is predicted that both phases are intrinsically brittleness and strongly prone to ductility when the pressure is above 65.6 and 68.5 GPa, respectively. Additionally, the pressure-induced elastic anisotropy analysis indicates that the elastically anisotropic of Be3N2 in both phases is strengthening with increasing pressure, and strongly dependent on the propagation direction. 相似文献
9.
Electromagnetic wave absorbing properties of absorbing composites depend on the dielectric and magnetic loss generally. In this paper, using Fe3O4-coated amorphous carbon nanotubes (ACNTs-Fe3O4) fabricated using a chemical synthesis–hydrothermal treatment method as an absorber and polyvinyl chloride (PVC) as a matrix, electromagnetic and mechanical properties of ACNT-Fe3O4/PVC composite were investigated. The results showed that the dielectric and magnetic losses of ACNT-Fe3O4/PVC composite were significantly enhanced in 8.2–12.4 GHz compared to ACNT/PVC composite, which improved absorbing properties, while slightly changing the mechanical properties. 相似文献
10.
A. Chopelas 《高压研究》2013,33(1-6):711-713
Abstract The effect of pressure on the optical or acoustic modes in the sideband fluorescence of Cr3+ doped into the MgO and MgAl2O4 lattices was identical to that measured for the corresponding Raman and infrared modes of MgAl2O4 and ultrasonic sound velocities (Chang and Barsch 1973, Jackson and Niesler 1982) for both MgO and MgAl2O4. This shows that the impurity cation does not measurably perturb the crystal lattice vibrations and thus may be used to probe the thermodynamic properties of such cubic materials at high pressures. The effect of pressure on the heat capacity, CV, and entropy, S, of MgO and MgAl2O4 spinel was determined using statistical thermodynamics on the lattice vibrations measured to over 200 kbar. The results for MgO are identical to predictions from Debye theory to at least 10% compression. 相似文献
11.
H. Montigaud S. Courjault B. Tanguy G. Demazeau J. Peyronneau D. Andrault 《高压研究》2013,33(1-6):213-219
Abstract Basing on “ab-initio” calculations, C3N4 was claimed to be an ultra-hard material with a bulk-modulus close to that of diamond. Five different structural varieties were announced: the graphitic form, the zinc blende structure, the α and β forms of Si3N4 and another form, isostructural with the high pressure variety of Zn2Si04. Using the same strategy as that developed for diamond or c-BN synthesis, it appears that the graphitic form could be an appropriate precursor for preparing the 3D varieties. Two main problems characterize the C3N4 synthesis: (-) the temperature should be reduced in order to prevent nitrogen loss, (-) the reactivity of the precursors should be improved. Consequently, we have developed a new process using the solvothermal decomposition of organic precursors containing carbon and nitrogen in the presence of a nitriding solvent. The resulting material, with a composition close to C3N4, has been characterized by different physico-chemical techniques. 相似文献
12.
Abstract In-situ X-ray diffraction technique using synchrotron radiation was applied for polymorphic transitions in SnO2 under high pressure and temperature generated with 6–8 type double-stage multianvils made of sintered diamond. At 23.6 GPa, the mixed phases of rutile-type structure (R-SnO2) and columbite-type (c-SnO2) were heated: at 700°C peaks of fluorite-type structure (F-SnO2) began to appear, and at 1000°C, C-SnO2 and 5m later R-SnO2 disappeared completely and a single phase of F-SnO2 was recognized, indicating a direct transition from R-SnO2 to F-SnO2. The volume reduction of 5.3% was obtained for C-SnO2→F-SnO2 transition. 相似文献
13.
Jorge Gimenez Lopez Christian Lund Rasmussen Yide Gao Peter Glarborg 《Proceedings of the Combustion Institute》2009,32(1):367-375
A detailed chemical kinetic model for oxidation of C2H4 in the intermediate temperature range and high pressure has been developed and validated experimentally. New ab initio calculations and RRKM analysis of the important C2H3 + O2 reaction was used to obtain rate coefficients over a wide range of conditions (0.003-100 bar, 200-3000 K). The results indicate that at 60 bar and medium temperatures vinyl peroxide, rather than CH2O and HCO, is the dominant product. The experiments, involving C2H4/O2 mixtures diluted in N2, were carried out in a high pressure flow reactor at 600-900 K and 60 bar, varying the reaction stoichiometry from very lean to fuel-rich conditions. Model predictions are generally satisfactory. The governing reaction mechanisms are outlined based on calculations with the kinetic model. Under the investigated conditions the oxidation pathways for C2H4 are more complex than those prevailing at higher temperatures and lower pressures. The major differences are the importance of the hydroxyethyl (CH2CH2OH) and 2-hydroperoxyethyl (CH2CH2OOH) radicals, formed from addition of OH and HO2 to C2H4, and vinyl peroxide, formed from C2H3 + O2. Hydroxyethyl is oxidized through the peroxide HOCH2CH2OO (lean conditions) or through ethenol (low O2 concentration), while 2-hydroperoxyethyl is converted through oxirane. 相似文献
14.
The pressure shift of 7D 0?5F 0 fluorescence line of SrB 4O 7:Sm 2+ has been recalibrated at high temperature and high pressure, respectively. Combined with the high pressure and high-temperature experimental data given by previous study, a quantitative analysis of the temperature effect on pressure shift of the 7D 0?5F 0 fluorescence line has been performed. The results show that there is an overall negligible coupling effect of temperature and pressure on the wavelength shift of the 7D 0?5F 0 fluorescence line below 770 K and 35 GPa. But above 770 K, the temperature effect on pressure shift could not be ignored at least in a relatively high pressure range. A proposed calibration relation is recommended to predict more accurate pressures in high pressure and high-temperature experiments with SrB 4O 7:Sm 2+ as the pressure scale. 相似文献
15.
The phase transition mechanism in squaric acid is reviewed from the viewpoint of the pressure dependence of the O—H—O bond length (2R). The two-dimensional pressure effect on Tc is extracted from the hydrostatic pressure behaviour by taking account of the uniaxial stress applied perpendicular to the layer planes. The result shows that if 2R(H2SQ) is stretched to 2R(D2SQ) the phase transition temperature 7H c of H2SQ coincides with TD c of D2SQ. This result supports the suggestion that the phase transition mechanism is of the order-disorder type. 相似文献
16.
Dong Shu Gopu Kumar Kwang-Bum Kim Kwang Sun Ryu Soon Ho Chang 《Solid State Ionics》2003,160(3-4):227-233
In order to improve the cycle stability of spinel LiMn2O4 electrode at elevated temperature, the LiCoO2-coated and Co-doped LiMn2O4 film were prepared by an electrostatic spray deposition (ESD) technique. LiCoO2-coated LiMn2O4 film shows excellent cycling stability at 55 °C compared to pristine and Co-doped LiMn2O4 films. The samples were studied by X-ray diffraction, scanning electron microscopy, Auger electron spectroscopy, cyclic voltammetry and electrochemical impedance spectroscopy. The excellent performance of LiCoO2-coated LiMn2O4 film can be explained by suppression of Mn dissolution. On the other hand, the LiCoO2-layer on the LiMn2O4 surface allows a homogenous Li+ insertion/extraction during electrochemical cycles and improves its structure stability. 相似文献
17.
The InVO4/TiO2 nanojunction composites with different weight ratio of 1:10, 1:25, 1:50 and 1:100 were successfully constructed using an ion impregnate method, followed by calcining temperature 400 °C for 2 h in Ar. The sono- and photo-catalytic activities of the InVO4/TiO2 nanojunction composites were evaluated through the degradation of methyl orange (MO) in aqueous solution under ultrasonic and visible light irradiation, respectively. The experimental results determined that the (1:50) InVO4/TiO2 nanojunction composite has exhibited the highest sonocatalytic activity. It can be ascribed to vectorial charge transfer at the co-excited InVO4/TiO2 interface under ultrasonic irradiation, results in the complete separation of electrons and holes. Interestingly, the (1:25) InVO4/TiO2 nanojunction composite displayed superior photocatalytic activity for MO degradation under visible light, indicating that InVO4 as a narrow band gap sensitizer can expand photocatalytic activity of TiO2 to visible region, and the charge transfer can be formed from high energy level of InVO4 conduction band to the low energy level of TiO2 conduction band in a present of excited InVO4 alone under visible light irradiation. The sono- and photo-catalytic activities of the InVO4/TiO2 nanojunction composites were found to be dependent significantly on different InVO4 contents, which can be explained by the influence of charge transfer on the basis of the work functions of different catalysis mechanism. 相似文献
18.
We report synthesis of Spinel type magnesium ferrite (MgFe2O4) material by a simple, inexpensive combustion method with glycine as a fuel and their application as a gas sensor for reducing gases (LPG, Acetone, Ethanol, Ammonia). The dependence of reducing gas sensing properties on the structural and surface morphological properties has been studied as an effect of sintering temperatures. The structural and surface morphological properties were studied by X-ray diffraction (XRD) and scanning electron microscopy (SEM), respectively. The MgFe2O4 were highly oriented along (311) with the spinel type crystal structure. The SEM observation reveals that porous morphology decreases due to the grain growth as sintering temperature increases. The mechanism of reducing gas sensing by the MgFe2O4 pellets is explained on the basis of adsorbed oxygen on the sensor surface. The selectivity and maximum response of 71% to 2000 ppm of LPG was observed at 698 K with the (MgFe2O4) material sintered at 1173 K. 相似文献
19.
Sagar E. Shirsath R.H. KadamAnil S. Gaikwad Ali GhasemiAkimitsu Morisako 《Journal of magnetism and magnetic materials》2011,323(23):3104-3108
Sintering temperature and particle size dependent structural and magnetic properties of lithium ferrite (Li0.5Fe2.5O4) were synthesized and sintered at four different temperatures ranging from 875 to 1475 K in the step of 200 K. The sample sintered at 875 K was also treated for four different sintering times ranging from 4 to 16 h. Samples sintered at 1475 K have the cubic spinel structure with a small amount of α-Fe2O3 (hematite) and γ-Fe2O3 (maghemite). The samples sintered at≤1275 K do not show hematite and maghemite phases and the crystals form the single phase spinel structure with the cation ordering on octahedral sites. Particle size of lithium ferrite is in the range of 13-45 nm, and is depend on the sintering temperature and sintering time. The saturation magnetization increased from 45 to 76 emu/g and coercivity decreases from 151 to 139 Oe with an increase in particle size. Magnetization temperature curve recorded in ZFC and FC modes in an external magnetic field of 100 Oe. Typical blocking effects are observed below about 244 K. The dielectric constant increases with an increase in sintering temperature and particle size. 相似文献
20.
High temperature thermoelectric properties of highly c-axis oriented Bi2Sr2Co2Oy thin films fabricated by pulsed laser deposition 下载免费PDF全文
High-temperature thermoelectric transport property measurements have been performed on the highly c-axis oriented Bi2Sr2Co20v thin films prepared by pulsed laser deposition on LaA1Oa (001). Both the electric resistivity p and the seebeck coefficient S of the film exhibit an increasing trend with the temperature from 300 K-1000 K and reach up to 4.8 m. cm and 202 V/K at 980 K, resulting in a power factor of 0.85 mW/mK which are comparable to those of the single crystalline samples. A small polaron hopping conduction can be responsible for the conduction mechanism of the film at high temperature. The results demonstrate that the Bi2Sr2Co2Oy thin film has potential application has high temperature thin film thermoelectric devices, 相似文献