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Abstract
Electrochemical detection methods hold many advantages over their optical counterparts, such as operation in complex sample matrices, low-cost and high volume manufacture and possible equipment miniaturisation. Despite these advantages, the use of electrochemical detection is currently limited in the clinical setting. There is a wide range of potential electrode materials, selected for optimal signal-to-noise ratios and reproducibility when detecting target analytes. The use of carbon paste electrodes (CPEs) for electrochemical detection can be limited by their analytical performance, however they remain very attractive due to their low cost and biocompatibility. This paper presents the fabrication of an easy-to-make and use graphite powder/paraffin wax paste combined with a substrate produced via additive manufacturing and confirms its functionality for both direct and indirect electrochemical measurements. The produced CPEs enable the direct voltammetric detection of hexaammineruthenium(III) chloride and dopamine at an experimental limit of detection (ELoD) of 62.5 µM. The key inflammatory biomarker Interleukin-6 through an enzyme-linked immunosorbant assay (ELISA) was also quantified, yielding a clinically-relevant ELoD of 150 pg/ml in 10% human serum. The performance of low-cost and easy-to-use CPEs obtained in 0.5 hours is showcased in this study, demonstrating the platform’s potential uses for point-of-need electroanalytical applications.
Original language | English |
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Number of pages | 11 |
Journal | Analyst |
Early online date | 2 Aug 2024 |
DOIs | |
Publication status | E-pub ahead of print - 2 Aug 2024 |
Keywords
- electrode materials
- carbon paste electrodes (CPEs)
- electroanalytical applications
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Doctoral Training Partnership 2020-2021 University of Strathclyde | Milne, Stuart
Corrigan, D., Giardini, M. E. & Milne, S.
EPSRC (Engineering and Physical Sciences Research Council)
1/10/21 → 1/04/25
Project: Research Studentship - Internally Allocated