Surface layer modification of ion bombarded HDPE

Press-moulded, high density polyethylene (HDPE) samples were subjected to ion bombardment and effects of the modification studied. He + ions of energy 100 keV or Ar + ions of energy 130 keV were applied in the range of dose 1–30 × 10 15/cm 2 or 1–100 × 10 14/cm 2, respectively. This paper has been f...

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Veröffentlicht in:Surface science 2004-08, Vol.564 (1), p.179-186
Hauptverfasser: Bielinski, D., Lipinski, P., Slusarski, L., Grams, J., Paryjczak, T., Jagielski, J., Turos, A., Madi, N.K.
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Sprache:eng
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Zusammenfassung:Press-moulded, high density polyethylene (HDPE) samples were subjected to ion bombardment and effects of the modification studied. He + ions of energy 100 keV or Ar + ions of energy 130 keV were applied in the range of dose 1–30 × 10 15/cm 2 or 1–100 × 10 14/cm 2, respectively. This paper has been focused on structural changes of the surface layer. The consequences of the modification were studied with TOF-SIMS and FTIR-IRS techniques. The results point on two mechanisms taking place simultaneously: ionization of polymer macromolecules and chain scission––resulting in creation of macroradicals. Both of them produce oxidation and lead to significant release of hydrogen. The former diminishes for the highest ion doses, however, creation of molecular oxygen cannot be excluded. The latter in the case of Ar + ion bombardment is reflected by prevailing degradation of the surface layer of HDPE. Contrary to the effect of heavy ions, He + ion bombardment was found to produce significant increase of the material hardness, which was explained by crosslinking of polyethylene. A mechanism of polyacetylene formation, proceeding finally to cross-polymerization of the polymer was proposed. Apart from structural changes, the modification revealed additionally a possibility to improve the wettability of the polymer.
ISSN:0039-6028
1879-2758
DOI:10.1016/j.susc.2004.06.196