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  • pulsed 157 nm F2-laser and pulsed 248 nm KrF laser in this work. In a range of irradiation parameters, the irradiation resulted in the formation of coherent ripples patterns. The dimension of the pattern was dependent on angle of laser beam incidence. The surface morphology of nanopatterned PET as well as consecutively sputtered gold layers was analyzed by atomic force microscopy (AFM), oxygen concentration in modified polymer surface was study by angular resolved X-ray induced photo-electron spectroscopy (ARXPS). Gold nano-layers were consecutively sputtered onto laser irradiated PET surfaces. Sputtering on exposed PET was performed also with different ion fluences. We found that the morphology of gold nanolayers changes and depends on the surface pattern of laser irradiated PET and also on the ion fluence used for sputtering. The formation of gold %22nano-hills%22 at the ridges of the ripple structures appears for F2 laser, the significant increase in surface roughness and pattern height being observed for higher ion fluences.
  • pulsed 157 nm F2-laser and pulsed 248 nm KrF laser in this work. In a range of irradiation parameters, the irradiation resulted in the formation of coherent ripples patterns. The dimension of the pattern was dependent on angle of laser beam incidence. The surface morphology of nanopatterned PET as well as consecutively sputtered gold layers was analyzed by atomic force microscopy (AFM), oxygen concentration in modified polymer surface was study by angular resolved X-ray induced photo-electron spectroscopy (ARXPS). Gold nano-layers were consecutively sputtered onto laser irradiated PET surfaces. Sputtering on exposed PET was performed also with different ion fluences. We found that the morphology of gold nanolayers changes and depends on the surface pattern of laser irradiated PET and also on the ion fluence used for sputtering. The formation of gold %22nano-hills%22 at the ridges of the ripple structures appears for F2 laser, the significant increase in surface roughness and pattern height being observed for higher ion fluences. (en)
Title
  • Properties of gold nanolayers sputtered on F2 and KrF laser treated PET
  • Properties of gold nanolayers sputtered on F2 and KrF laser treated PET (en)
skos:prefLabel
  • Properties of gold nanolayers sputtered on F2 and KrF laser treated PET
  • Properties of gold nanolayers sputtered on F2 and KrF laser treated PET (en)
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  • RIV/60461373:22310/11:43892687!RIV12-MSM-22310___
http://linked.open...avai/riv/aktivita
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  • P(GA106/09/0125), P(GP106/09/P046), P(IAA400720710), P(KAN200100801), P(KAN400480701), P(LC06041)
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  • 224669
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  • RIV/60461373:22310/11:43892687
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  • morphology; gold sputtering; polymer; Excimer laser (en)
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  • [BB2CD685671C]
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  • Auckland
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  • Auckland
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  • Processing and Fabrication of Advanced Materials XIX
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  • Heitz, J.
  • Siegel, Jakub
  • Slepička, Petr
  • Švorčík, Václav
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http://linked.open.../riv/zahajeniAkce
number of pages
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  • Centre for Advanced Composite Materials, University of Auckland
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  • 978-0-473-18178-9
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  • 22310
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