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Eastern Michigan University

Characterization of PET samples processed in an RF oxygen discharge

Abstract

dc:description.abstract

<p>A radio frequency plasma (13.56 MHz) was used to modify the surface of a poly (ethylene terepthalate) (PET) sample. The plasma was generated in a pure oxygen process atmosphere at pressures of 100 mTorr, and 2.0 Torr at output powers of 250 Watts and 500 Watts.</p> <p>Optical emission spectroscopy (OES) was used to characterize the plasma/sample interaction. Spectra were measured from 250 nm to 900 nm during each of the processing sessions.</p> <p>The spectra showed changes depending upon the pressure of the plasma. Molecules of OH and atomic oxygen were observed at low pressures (100 mTorr), whereas CO and atomic hydrogen were observed at high pressures (2.0 Torr).</p> <p>The sessile drop method was used to determine the relative change in the wettability of the sample surface along a continuum from hydrophobic to hydrophilic.</p> <p>The measured angles were compared to the initial readings (Figure 18) and showed a decrease of 40-50% in contact angle after treatment.</p> <p>There was an observable change in the PET samples after processing; in particular, the surface was visibly degraded.</p>

Degree

thesis:*
Name thesis:degree_name
Master of Science (MS)
Level thesis:degree_level
Open Access Thesis
Discipline thesis:degree_discipline
Engineering Technology
Year
2009

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Rhoton, Russell L
Contributors dc:contributor
  • Erik Lokensgard, PhD. Chair
  • Mary L. Brake, PhD.
  • Pamela Speelman, PhD.

Subjects

dc:subject × 4

Identifiers

dc:identifier.*
Repository record dc:identifier
https://commons.emich.edu/theses/243
OAI identifier oai:identifier
oai:commons.emich.edu:theses-1242

Chain of custody

source
Harvested from
Eastern Michigan University
Base URL
commons.emich.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Rhoton, Russell L. Characterization of PET samples processed in an RF oxygen discharge. Open Access Thesis thesis, 2009. https://commons.emich.edu/theses/243