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Wettability investigation of UV/O3 and acid functionalized MWCNT and MWCNT/PMMA nanocomposites by contact angle measurement

journal contribution
posted on 2024-11-01, 18:46 authored by Seil Kim, Abdullah Kafi, Ehsan Bafekrpour, Young-In Lee, Brownyn Fox, Manwar Hussain, Yong-Ho Choa
The dispersion state of individual MWCNT in the polymer matrix influences the mechanical, thermal, and electrical properties of the resulting composite. One method of obtaining a good dispersion state of MWCNT in a polymer matrix is to functionalize the surface of MWCNT using various treatments to enhance the surface energy and increase the dispersibility of MWCNT. In this study, wettability and surface energy of UV/Oand acid-treated multiwall carbon nanotubes (MWCNTs) and its polymethyl methacrylate (PMMA) polymer nanocomposites were measured using contact angle analysis in various solvent media. Contact angle analysis was based on ethylene glycol-water-glycerol probe liquid set and data was further fitted into geometric mean (Fowkes), van Oss-Chaudhury-Good (GvOC), and Chang-Qing-Chen (CQC) models to determine both nonpolar and acid base surface energy components. Analysis was conducted on MWCNT thin films subjected to different levels of UV/Oand acid treatments as well as their resulting MWCNT/PMMA nanocomposites. Contact angle analysis of thin films and nanocomposites revealed that the total surface energy of all samples was well fitted with each other. In addition, CQC model was able to determine the surface nature and polarity of MWCNT and its nanocomposites. Results indicated that the wettability changes in the thin film and its nanocomposites are due to the change in surface chemistry. Finally, electrical properties of nanocomposites were measured to investigate the effect of surface functionality (acid or basic) on the MWCNT surfaces.

History

Related Materials

  1. 1.
    DOI - Is published in 10.1155/2015/130270
  2. 2.
    ISSN - Is published in 16874110

Journal

Journal of Nanomaterials

Volume

2015

Number

130270

Start page

1

End page

12

Total pages

12

Publisher

Hindawi

Place published

United States

Language

English

Copyright

© 2015 Seil Kim et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Former Identifier

2006052887

Esploro creation date

2020-06-22

Fedora creation date

2015-05-06