hrvatski jezikClear Cookie - decide language by browser settings

Optimizing the preparation of polymer nanocoatings by self-assembly and gamma irradiation of elaidic acid on copper surfaces

Pezić, Ena; Matijaković Mlinarić, Nives; Kovač, Janez; Dubček, Pavo; Kralj, Damir; Marušić, Katarina (2024) Optimizing the preparation of polymer nanocoatings by self-assembly and gamma irradiation of elaidic acid on copper surfaces. Progress in Organic Coatings, 192 . ISSN 0300-9440

[img] PDF - Accepted Version - article
Restricted to Closed Access until 9 May 2026.
Available under License Creative Commons Attribution Non-commercial No Derivatives.

Download (1MB) | Request a personal copy from author

Abstract

Self-assembling molecular layers (SAMs) can serve as a densely packed film of monomers that can be easily crosslinked to form nanometer-thick polymer coatings with high protective properties. However, the properties of the resulting coatings are highly dependent on the preparation method used to apply the SAM to the surface. In this work, the influence of different SAM preparation steps (preparation of the oxide layer, self-assembly and drying) on the corrosion resistance of the coated samples, as well as the method of applying the molecules to the surface (immersion, spraying, brush application), was investigated. Elaidic acid, an unsaturated trans fatty acid, was applied to copper and crosslinked with gamma radiation. The properties of the coatings were studied by electrochemical methods, contact angle measurements, XPS, AFM and FTIR. The results show that the oxidation step is crucial for obtaining proper coatings, while the drying at elevated temperatures is not required. It has also been shown that the immersion of samples results in coatings with the best protective properties, while the application by brush can be an alternative method of application. On the other hand, spraying the elaidic acid results in a less uniform coating.

Item Type: Article
Uncontrolled Keywords: polymer nanocoatings; self-assembly; radiation crosslinking; ionizing radiation; corrosion protection; fatty acids
Subjects: NATURAL SCIENCES > Chemistry
Divisions: Division of Materials Chemistry
Division of Materials Physics
Projects:
Project titleProject leaderProject codeProject type
Primjena ionizirajućeg zračenja za dobivanje polimernih nano prevlaka na metalima-RadMeNanoKatarina Marušić; Vladan Desnica; Domagoj Šatović; Helena Otmačić ĆurkovićIP-2020-02-4344HRZZ
Depositing User: Katarina Marušić
Date Deposited: 21 Nov 2024 09:28
URI: http://fulir.irb.hr/id/eprint/9316
DOI: 10.1016/j.porgcoat.2024.108514

Actions (login required)

View Item View Item

Downloads

Downloads per month over past year

Contrast
Increase Font
Decrease Font
Dyslexic Font
Accessibility