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Titlebook: Nanostructured Materials; Heinrich Hofmann (Chairman of COST 523),Zakia Rahm Book 2002 Springer-Verlag Wien 2002 aerosol.analytical chemis

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Preparation of Nanostructured Magnetic Films by the Plasma Jet Technique vacuum pumps were used to compare the quality of the produced films. The films prepared from a Fe nozzle in the two different equipments shows that oxygen in the residual atmosphere of the low vacuum reactor leads mainly to the formation of iron oxides. The Fe and mumetal films prepared in the high
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Characterization of Nanocomposite Coatings in the System Ti-B-N by Analytical Electron Microscopy ananced DC magnetron cosputtering using segmented TiN/TiB. targets. The chemistry and microstructure of a TiB.N. coating was investigated using X-ray and electron diffraction, photoelectron spectroscopy, energy-filtering transmission electron microscopy, and electron energy-loss spectrometry. High res
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Electronic Structure and Size of TiO2 Nanoparticles of Controlled Size Prepared by Aerosol Methodsanoparticles of controlled size prepared by aerosol methods. The electronic structure of these nanoparticles was probed by X-ray absorption spectroscopy (XAS), the particle size by atomic force microscopy (AFM). XAS spectra show that the particles crystallize in the anatase phase upon heating at 500
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Influence of Nanoporosity and Roughness on the Thickness-Dependent Coercivity of Iron Nanonetworkskness range of approximately 2 to 45 nm where a .-type domain wall has been theoretically predicted. Such magnetic nanonetworks have been prepared by sputtering iron on the walls of commercially available porous nanochannel alumina (NCA) membranes. The thickness dependence of coercivity has also bee
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