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Timed electrodeposition of PEDOT:Nafion onto carbon fiber-microelectrodes enhances dopamine detection in Zebrafish retina

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posted on 2023-08-05, 12:48 authored by Whirang Cho, Favian A. Liu, Aaron Hendrix, Brazil McCray, Thomas Asrat, Victoria ConnaughtonVictoria Connaughton, Alexander ZestosAlexander Zestos

Carbon fiber-microelectrodes (CFMEs) are one of the standards for the detection of neurotransmitters such as dopamine (DA). In this study, we demonstrate that CFMEs electrodeposited with poly (3,4-ethylenedioxythiophene) (PEDOT) in the presence of Nafion exhibit enhanced sensitivity for DA detection. Scanning electron microscopy (SEM) revealed the smooth outer surface morphologies of polymer coatings, which filled in the ridges and grooves of the bare unmodified carbon electrode and energy-dispersive X-ray spectroscopy (EDX) confirmed PEDOT:Nafion incorporation. PEDOT:Nafion coated CMFEs exhibited a statistically enhanced two-fold increase in DA sensitivity compared to unmodified microelectrodes, with stability and integrity of the coated microelectrodes maintained for at least 4 h. A scan rate test revealed a linear relationship with peak DA oxidative current (5 μM), indicating adsorption control of DA to the surface of the PEDOT:Nafion electrode. As proof of principle, PEDOT:Nafion coated electrodes were used to detect potassium chloride (KCl)-induced DA release in zebrafish (Danio rerio) retinal tissue ex vivo, thus illustrating their applicability as biosensors.

History

Publisher

Journal of the Electrochemical Society

Notes

Journal of the Electrochemical Society, Volume 167, Issue 11, 8 January 2020, Article number 115501.

Handle

http://hdl.handle.net/1961/auislandora:85440

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