Abstract
With the emergence of wearable electronics for health and the prevalence of chronic wounds, there is demand for an effective wearable pH sensor. A simple method of solvent treating wet-spun poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS) fibres proved effective in the development of highly conductive fibre substrates. With an optimised polyaniline coating, these fibres displayed a Nernstian response to changes in pH in the solid-state vs. a fabricated pseudoreference electrode across a wide pH range of 3.0 to 9.0. In addition, these biocompatible fibre electrodes displayed antibacterial properties. The fibre electrodes offer significant opportunities for future wearable textile-based sensors as well as the realisation of a real-time, on-body pH sensing device for monitoring skin and wound healing.
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CITATION STYLE
Smith, R. E., Totti, S., Reid, D., Hingley-Wilson, S. M., Velliou, E., Campagnolo, P., … Crean, C. (2024). pH-responsive and antibacterial PANI-PEDOT:PSS fibres for wearable applications. Materials Advances, 5(6), 2306–2315. https://doi.org/10.1039/d3ma00711a
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