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Titlebook: ISIAME 2008; Proceedings of the I E. Kuzmann,K. Lázár Conference proceedings 2009 Springer-Verlag Berlin Heidelberg 2009 Cluster.ESR.Hyperf

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楼主: Falter
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Synthesis and magnetic properties of Cu0.5Ni0.5Fe2O4 nanoparticles produced by glycothermal and hyder gauge pressure of 100 psi. The hydrothermal treatment was done at 100°C under zero pressure. Complete single-phase cubic spinel structure in the samples made by glycothermal (sample G) and hydrothermal (sample H) processes formed after annealing at 600°C and 900°C respectively. The coercive field
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https://doi.org/10.1007/978-3-642-01370-6Cluster; ESR; Hyperfine Interactions; Mössbauer effect; Mössbauer spectroscopy; particles; quenching; spect
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Magnetic phase transitions in nanoclusters and nanostructures,nostructures in the beginning of sintering, (3) nanostructures induced by shear stress under high-pressure action, (4) ordered iron oxide nanostructures. The thermodynamic models for FOMPT appearance and cluster critical size are proposed. The role of surface tension, defect density and nanocluster organization are discussed.
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Characterization of magnetic iron oxide nanoparticles, is to synthezise and characterize ε-Fe.O. magnetic nanoparticles embedded in amorphous SiO. matrix. The Mössbauer spectroscopy analysis of the samples was complemented by the study of X-ray powder diffraction and high-resolution transmission electron microscopy.
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,Hydrogenation of FeCoZr–Al2O3 nanocomposites studied by Mössbauer spectroscopy and magnetometry,scopy and magnetometry. Variations of local structure, blocking temperature and mean FeCoZr nanoparticles’ volume are discussed with respect to (i) composition and (ii) two competing processes—H. incorporation and annealing—occurred during treatment in H. plasma.
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,Mössbauer study of rapidly solidified Al-Fe based amorphous alloys,on diminishes the glass forming ability and results in precipitation of the stable AlSb compound. The X-ray amorphous Al.Fe.Y. alloy shows a short range order resembling to the Al.Fe compound as it can be judged from the Mössbauer data.
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,Integral low-energy electron Mössbauer spectroscopic studies of the surfaces of carbon nanotube-nanS). Several samples, prepared by reduction of .-(Al,Fe).O. or (Mg,Fe)Al.O. precursors in a H.-CH. atmosphere, were investigated, demonstrating that ILEEMS is a promising tool completing transmission Mössbauer spectroscopy for the investigation of the metal Fe and iron-carbide particles in the different carbon nanotube systems.
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