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Träfflista för sökning "WFRF:(Otto F) srt2:(1997-1999)"

Sökning: WFRF:(Otto F) > (1997-1999)

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1.
  • Elihn, K, et al. (författare)
  • Nanoparticle formation by laser-assisted photolysis of ferrocene.
  • 1999
  • Ingår i: NANOSTRUCTURED MATERIALS. - 0965-9773. ; 12:1-4, s. 79-82
  • Tidskriftsartikel (refereegranskat)abstract
    • Laser-assisted formation of iron-containing nanoparticles has been performed by photolytic dissociation of ferrocene vapour by a pulsed ArF excimer laser at 193 nm. The process was carried out at atmospheric pressure, either in an inert atmosphere of argo
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2.
  • Herranen, Merja, et al. (författare)
  • Corrosion properties of thin molybdenum silicide films
  • 1997
  • Ingår i: Surface and Coatings Technology. ; 96:2-3, s. 245-254
  • Tidskriftsartikel (refereegranskat)abstract
    • The corrosion properties of sputtered molybdenum and molybdenum silicide films in hydrochloric acid (HCl) have been studied by means of potentiodynamic measurements. Contributions from the substrate to the corrosion behaviour was avoided by depositing the films on inert aluminium oxide (Al2O3). The compositions studied were Mo, MoSi0.58, MoSi1.04, MoSi1.4 and MoSi1.9–2.1. Characterisation of the sampies was made by X-ray diffraction (XRD) and scanning electron microscopy (SEM) before and after corrosion. X-ray photoelectron spectroscopy (XPS) and Auger electron spectroscopy (AES) were used to analyse the polarised films. Corrosion of M3Si was found in the molybdenum-rich samples (MoSi0.58) containing the two phases Mo3Si and Mo5Si3. Polarisation curves for these films showed one passivation peak at 228 mV vs. the saturated calomel electrode (SCE). The MoSi1.9–2.1 films had the best corrosion properties of the films studied. This composition had three passivation peaks, at about 154, 305 and 1850 mVSCE, respectively. In the silicon-rich samples, containing the phases MoSi2 and Mo5Si3, preferentiai corrosion of Mo5Si3 was found. All the samples containing the disilicide phase showed at least two passivation peaks. XPS and AES studies on the passive films formed on the samples at the two first passivation peaks indicate that both peaks are due to oxidation of silicon- and molybdenum-containing species. The amount of molybdenum in the outermost layer is increased after the second peak.
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Carlsson, Jan-Otto (2)
Boman, Mats (1)
Elihn, K. (1)
Herranen, Merja (1)
Otten, F (1)
Kruis, FE (1)
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Fissan, H (1)
Delblanc Bauer, A (1)
Bunshah, R. F. (1)
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Uppsala universitet (2)
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