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KAYA, S., MASIYAMA, Y. The Magnetic Properties of Single Crystals of Nickel. Nature 120, 951–952 (1927). https://doi/10.1038/120951a0. Download citation. Issue Date: 31 December 1927
Bavarder sur Internet2018-9-14 The magnetic properties shows no hysteresis and zero results for coercivity force and remanence that indicates superparamagnetic behavior of the Ni nanoparticles.
Bavarder sur Internet2010-4-29 ABSTRACT The magnetic properties of 10 nm size Ni ( OH) 2 nanoparticles prepared by sol-gel method have been studied.
Bavarder sur InternetI. Magnetic properties of alloys of Nickel and iron John Hopkinson Published: 01 January 1891 https://doi/10.1098/rspl.1890.0001 Abstract Eight different alloys have been
Bavarder sur Internet1999-3-1 We have performed a comprehensive first-principles investigation of the structural, electronic and magnetic properties of the low-index surfaces of ferromagnetic
Bavarder sur InternetIN a pamphlet issued by the Bureau of Information on Nickel of the Mond Nickel Co., Ltd., Mill-bank, S.W.I, an account is given of nickel-iron alloys and their characteristics which
Bavarder sur Internet2022-12-3 Nickel (Ni) is ferromagnetic in nature, because of the parallel alignment of its 2 unpaired electrons or ‘spins’ in presence of an external magnetic field. Nickel holds its magnetic property even in absence of any
Bavarder sur Internet2019-6-1 Ni 2+ atomic concentration was found to dominate the magnetic property. • The magnetization increases with Ni inclusion in CuO lattice. Abstract CuO films were
Bavarder sur Internet2022-12-1 Magnetic susceptibility of Nickel is N/A. In electromagnetism, magnetic susceptibility is the measure of the magnetization of a substance. Magnetic susceptibility
Bavarder sur Internet摘要: We present magnetic properties of NiMn2O4−δ (nickel manganite) which was synthesized by complex polymerization synthesis method followed by successive heat
Bavarder sur InternetThe magnetic susceptibility of Mn, Fe, Co, Ni and their alloys has been measured through their melting points up to 1600°C. In general, the susceptibility of transition metals shows a decrease or an 57 Thermodynamics of Nonstoichiometric Nickel Tellurides. I. Heat Capacity and Thermodynamic Functions of the δ Phase from 5 to 350°K
Bavarder sur Internet2016-5-23 Synthesis and magnetic properties of nickel nanoparticles Full Record Related Research Abstract Monodisperse nickel nanoparticles (Ni-NPs) were synthesized via a thermal decomposition process. The NPs were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). They were spherical with mean diameter of 4 nm.
Bavarder sur InternetI. Magnetic properties of alloys of Nickel and iron John Hopkinson Published: 01 January 1891 https://doi/10.1098/rspl.1890.0001 Abstract Eight different alloys have been examined, distinguished here by the letters of the alphabet.
Bavarder sur Internet2010-4-29 The magnetic moments increase with decreasing temperature in a low applied field, which is due to the spin-frozen-like state at low temperatures, and the metamagnetic transition is not clearly observed even in an applied field of 70 kOe due to the size effect.
Bavarder sur Internet2014-4-3 Table 1 shows that the magnetic field changes all the eight properties of nickel. However, only E and HIT are independent. The following reasons for the magnetic field dependence are...
Bavarder sur Internet2013-10-28 The magnetic properties of the Ni nanoparticles were experimentally as well as theoretically investigated as a function of particle size. By means of thermogravimetric/differential thermal analysis, the Curie temperature TC of the 23-, 45-, 80-, and 114-nm Ni particles was found to be 335°C, 346°C, 351°C, and 354°C, respectively.
Bavarder sur InternetThese measurements provide evidence that the granular Ni-Si O2 system can exist in three possible magnetic phases. At sufficiently high temperatures each nickel grain is paramagnetic. At lower temperatures the ensemble is superparamagnetic with each grain being ferromagnetic but with the magnetic moments of neighboring grains weakly
Bavarder sur Internet2007-11-20 Nickel nanoparticles were prepared from the thermal decomposition of nickel(II) acetylacetonate in alkylamines and characterized by powder x-ray diffraction, transmission electron microscopy and magnetic measurement. The reaction temperature, heating rate and solvent type play an important role in the control over the crystalline phase.
Bavarder sur Internet摘要: We present magnetic properties of NiMn2O4−δ (nickel manganite) which was synthesized by complex polymerization synthesis method followed by successive heat treatment and final calcinations in air at 1200 °C.
Bavarder sur Internet2017-8-24 anisotropy governing the demagnetization of the magnetic fields. C 2004 Kluwer Academic Publishers 1. Introduction Magnetic properties of thin films have been studied for many years. An important factor driving the interest in thin film magnetism is the capability to deliberately modify the structure of a material in order to influence
Bavarder sur InternetMagnetic methods were used to study a series of reduced nickel-molybdenum catalysts. The metallic phase crystals are a disordered solid solution of molybdenum in nickel. The surface layer of the metal particles are enriched in molybdenum and is weakly paramagnetic, while the internal core of the crystal is virtually pure ferromagnetic nickel.
Bavarder sur Internet2016-5-23 Synthesis and magnetic properties of nickel nanoparticles Full Record Related Research Abstract Monodisperse nickel nanoparticles (Ni-NPs) were synthesized via a thermal decomposition process. The NPs were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). They were spherical with mean diameter of 4 nm.
Bavarder sur InternetTo investigate the electronic (oxidation) states of the nickel complexes and magnetic properties in each crystal, electron spin resonance (ESR) measurements for these crystals, as well as the magnetic susceptibility measurement for 3-Ni-4HDMSO, were performed.
Bavarder sur Internet2020-10-1 The crystallite size was found to be 24 nm which indicates the nanocrystalline nature of the prepared nickel ferrite nanoparticles. The magnetic properties of were investigated using the pulse field hysteresis loop (PFHL) technique at room temperature. The saturation magnetization, coercivity and remanence magnetization shows enhanced
Bavarder sur Internet2012-9-13 The stronger magnetization results from the larger surface area of PSi. The PL intensity, peak wavelength, and lifetime of Ni/PSi are strongly dependent on the NiCl 2 concentration. This dependence is due to the different thickness of the oxide overlayer on the PSi surface formed during the Ni plating process.
Bavarder sur Internet2013-10-28 The magnetic properties of the Ni nanoparticles were experimentally as well as theoretically investigated as a function of particle size. By means of thermogravimetric/differential thermal analysis, the Curie temperature TC of the 23-, 45-, 80-, and 114-nm Ni particles was found to be 335°C, 346°C, 351°C, and 354°C, respectively.
Bavarder sur InternetThese measurements provide evidence that the granular Ni-Si O2 system can exist in three possible magnetic phases. At sufficiently high temperatures each nickel grain is paramagnetic. At lower temperatures the ensemble is superparamagnetic with each grain being ferromagnetic but with the magnetic moments of neighboring grains weakly
Bavarder sur InternetFor amounts of nickel from one percent up to 30 percent the alloy, while paramagnetic in most respects, does not obey any known law of paramagnetism with regard to temperature. As the temperature is increased the susceptibility first increases and then decreases, the maximum occurring in the neighborhood of the Curie point for nickel.
Bavarder sur Internet摘要: We present magnetic properties of NiMn2O4−δ (nickel manganite) which was synthesized by complex polymerization synthesis method followed by successive heat treatment and final calcinations in air at 1200 °C.
Bavarder sur Internet2007-11-20 Nickel nanoparticles were prepared from the thermal decomposition of nickel(II) acetylacetonate in alkylamines and characterized by powder x-ray diffraction, transmission electron microscopy and magnetic measurement. The reaction temperature, heating rate and solvent type play an important role in the control over the crystalline phase.
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