RAPID DETECTION OF MERCURY USING AN ELECTROCHEMICAL APPROACH

dc.contributor.advisorSilva, Saimon Moraes
dc.contributor.authorAlharbi, Bayan
dc.date.accessioned2026-07-14T16:10:00Z
dc.date.issued2026
dc.description.abstractThis study focuses on the development and validation of a low-cost, biofouling-resistant electrochemical sensor for trace mercury (Hg2+) detection in complex environmental and biological matrices. Although gold electrodes combined with anodic stripping voltammetry offer high sensitivity for mercury monitoring, non-specific macromolecule adsorption typically degrades sensor performance in complex matrices such as wastewater and whole blood samples. To overcome this limitation, this study introduces a biomimetic interface by functionalizing gold electrodes with a self-assembled monolayer of lubricin, a glycosylated mucin-like glycoprotein. Lubricin’s bottle-brush architecture forms a hydrated barrier that effectively excludes interfering proteins and organic foulants through steric and electrostatic repulsion, while maintaining the necessary electron transfer kinetics for mercury quantification. The performance, linearity, and sensitivity of the modified sensor were optimized and validated, demonstrating compliance with regulatory limits in both water and blood media. This research provides a resilient blueprint for decentralized, field-deployable heavy metal diagnostics in resource-limited settings.
dc.format.extent45
dc.identifier.urihttps://hdl.handle.net/20.500.14154/79534
dc.language.isoen
dc.publisherSaudi Digital Library
dc.subjectElectrochemical sensor
dc.subjectMercury detection
dc.subjectAnti-biofouling
dc.subjectLubricin
dc.subjectAnodic stripping voltammetry
dc.titleRAPID DETECTION OF MERCURY USING AN ELECTROCHEMICAL APPROACH
dc.typeThesis
sdl.degree.departmentDepartment of Chemistry Biomedicine and Environment
sdl.degree.disciplineAnalytical Chemistry
sdl.degree.grantorLa Trobe University
sdl.degree.nameMaster of Chemistry
sdl.thesis.sourceSACM - Australia

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