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University of Southern Mississippi

Synthesis and Study of Stimuli-Responsive Fluorescent Polymeric Thin Films for Early Corrosion Detection by Directly Monitoring Iron Dissolution from Steel Substrates

Abstract

dc:description.abstract

<p>The successful measurement and prediction of material lifetimes is of high importance for proper maintenance on metal infrastructures for prevention of asset loss through corrosive processes. Current testing protocols include mismatched accelerated weathering techniques in combination with visual corrosion detection that consume substantial amounts of time and resources and often lead to inaccurate extrapolation to natural conditions. For corrosion science and engineering to evolve further, accurate and early detection methods of efficiently evaluating materials are necessary. Fluorescence spectroscopy is one established non-destructive analytical technique that is highly sensitive and selective to a variety of metal ion species and chemical environments (pH, polarity etc.). Our lab has adopted the use of fluorescence for evaluation and screening of coated substrates for early detection of corrosion in advance of serious metal visual and/or physical damage. The use of various environmentally sensitive fluorescent molecules doped in thermoplastic polyepoxides for detecting water, chloride ions, metal ions (Fe<sup>3+</sup>, Fe<sup>2+</sup>, Al<sup>3+</sup>), and pH have and can be further used to quantify corrosion events and develop an understanding of ion migration and pre-corrosion events and kinetics. Fluorescence emissions monitored versus time potentially yields rate and/or kinetic data and quantifiable correlations between fluorescence response and undercoating pre-macroscopic corrosion. Our results can be utilized for earlier corrosion detection and testing protocols in combination with real time corrosion indicators. Several Fe<sup>2+</sup> and Fe<sup>3+</sup> specific fluorophores were evaluated for their efficacy as possible in situ corrosion indicators on ferrous substrates. Differentiation of Fe<sup>2+</sup> and Fe<sup>3+</sup> will allow for improved understanding of corrosion mechanisms.</p>

Degree

thesis:*
Name thesis:degree_name
Master of Science (MS)
Level thesis:degree_level
Masters Thesis
Discipline thesis:degree_discipline
Polymers and High Performance Materials
Year dc:date.available
2013

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Harman, Kevin William
Contributors dc:contributor
  • James Rawlins
  • Sergei Nazarenko
  • Daniel Savin

Identifiers

dc:identifier.*
Repository record dc:identifier
https://aquila.usm.edu/masters_theses/505
OAI identifier oai:identifier
oai:aquila.usm.edu:masters_theses-1565

Chain of custody

source
Harvested from
University of Southern Mississippi
Base URL
aquila.usm.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
related terms
citation

Harman, Kevin William. Synthesis and Study of Stimuli-Responsive Fluorescent Polymeric Thin Films for Early Corrosion Detection by Directly Monitoring Iron Dissolution from Steel Substrates. Masters Thesis thesis, 2013. https://aquila.usm.edu/masters_theses/505