2015
DOI: 10.1039/c5tb00901d
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Properties and reactivity of polyoxazoline plasma polymer films

Abstract: Polyoxazolines arise as a promising new class of polymers for biomedical applications, but creating oxzoline-based coatings via conventional methods is challenging. Herein, nanoscale polyoxazoline coatings were generated via a single step plasma deposition process. The effects of plasma deposition conditions on the film stability, structure and chemical group density were investigated. Detailed examination of the physical and chemical properties of plasma deposited polyoxazoline via XPS, FTIR, contact angle an… Show more

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Cited by 69 publications
(108 citation statements)
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“…It is anticipated that low degree of polymerisation would lead to a reduction in the plasma film crosslinking and poor adhesion to the substrate. This scenario was in good agreement with the findings from other studies where low powers were applied during plasma polymerisation of OX precursors . This is also valid for plasma processes of other precursors …”
Section: Resultssupporting
confidence: 92%
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“…It is anticipated that low degree of polymerisation would lead to a reduction in the plasma film crosslinking and poor adhesion to the substrate. This scenario was in good agreement with the findings from other studies where low powers were applied during plasma polymerisation of OX precursors . This is also valid for plasma processes of other precursors …”
Section: Resultssupporting
confidence: 92%
“…There are parameters in each technique that can influence the final quality of the deposited plasma coating. The plasma coatings presented in this study, which are obtained by atmospheric pressure plasma jet tend to be more oxidised compared with those obtained by vacuum plasmas . This can be explained by the fact that the plasma jet was running with helium in an open air environment, which results in a higher oxidation of the precursor during the plasma polymerisation process.…”
Section: Resultsmentioning
confidence: 68%
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