Electrochemical Detection of Adrenaline Using Nafion–Trimethylsilyl and Nafion–Trimethylsilyl–Ru<sup>2+</sup>-Complex Modified Electrodes

The preparation and properties of Nafion–TMS (Nafion–trimethylsilyl) and Nafion–TMS–Ru<sup>2+</sup>-complex modified GC electrodes are reported for the electrochemical oxidation reaction of adrenaline (AD). The structure of Nafion–TMS was studied by atomic force microscopy. The incorpora...

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Main Authors: R. Aguilar-Sánchez, D. A. Durán-Tlachino, S. L. Cabrera-Hilerio, J. L. Gárate-Morales
Format: Article
Language:English
Published: MDPI AG 2025-03-01
Series:Electrochem
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Online Access:https://www.mdpi.com/2673-3293/6/2/10
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author R. Aguilar-Sánchez
D. A. Durán-Tlachino
S. L. Cabrera-Hilerio
J. L. Gárate-Morales
author_facet R. Aguilar-Sánchez
D. A. Durán-Tlachino
S. L. Cabrera-Hilerio
J. L. Gárate-Morales
author_sort R. Aguilar-Sánchez
collection DOAJ
description The preparation and properties of Nafion–TMS (Nafion–trimethylsilyl) and Nafion–TMS–Ru<sup>2+</sup>-complex modified GC electrodes are reported for the electrochemical oxidation reaction of adrenaline (AD). The structure of Nafion–TMS was studied by atomic force microscopy. The incorporation of [Ru(bpy)<sub>3</sub>]<sup>2+</sup> and [Ru(phen)<sub>3</sub>]<sup>2+</sup> complexes into Nafion–TMS was investigated by UV-vis spectroscopy, providing information about the interaction of the modified Nafion–TMS–Ru<sup>2+</sup>-complex composite. According to electrochemical studies, the electrodes modified with this composite polymer showed a faster electron transfer and greatly improved kinetics for the redox reaction of AD in standard solutions when compared to bare and Nafion–TMS modified electrodes. The oxidation current increased linearly with adrenaline concentration in the range from 1 to 20 mM and 1 to 100 mM for Nafion–TMS and the modified Nafion–TMS–Ru<sup>2+</sup> complex, respectively. A strong pH dependence on the electroanalytical parameters was found for adrenaline detection, indicating that electron transfer reaction occurs in tandem with proton transfer.
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spelling doaj-art-25c1a654c62743f48522e2a2fd8de7212025-08-20T03:27:01ZengMDPI AGElectrochem2673-32932025-03-01621010.3390/electrochem6020010Electrochemical Detection of Adrenaline Using Nafion–Trimethylsilyl and Nafion–Trimethylsilyl–Ru<sup>2+</sup>-Complex Modified ElectrodesR. Aguilar-Sánchez0D. A. Durán-Tlachino1S. L. Cabrera-Hilerio2J. L. Gárate-Morales3Facultad de Ciencias Químicas, Benemérita Universidad Autónoma de Puebla, Puebla 72570, MexicoFacultad de Ciencias Químicas, Benemérita Universidad Autónoma de Puebla, Puebla 72570, MexicoFacultad de Ciencias Químicas, Benemérita Universidad Autónoma de Puebla, Puebla 72570, MexicoFacultad de Ciencias Químicas, Benemérita Universidad Autónoma de Puebla, Puebla 72570, MexicoThe preparation and properties of Nafion–TMS (Nafion–trimethylsilyl) and Nafion–TMS–Ru<sup>2+</sup>-complex modified GC electrodes are reported for the electrochemical oxidation reaction of adrenaline (AD). The structure of Nafion–TMS was studied by atomic force microscopy. The incorporation of [Ru(bpy)<sub>3</sub>]<sup>2+</sup> and [Ru(phen)<sub>3</sub>]<sup>2+</sup> complexes into Nafion–TMS was investigated by UV-vis spectroscopy, providing information about the interaction of the modified Nafion–TMS–Ru<sup>2+</sup>-complex composite. According to electrochemical studies, the electrodes modified with this composite polymer showed a faster electron transfer and greatly improved kinetics for the redox reaction of AD in standard solutions when compared to bare and Nafion–TMS modified electrodes. The oxidation current increased linearly with adrenaline concentration in the range from 1 to 20 mM and 1 to 100 mM for Nafion–TMS and the modified Nafion–TMS–Ru<sup>2+</sup> complex, respectively. A strong pH dependence on the electroanalytical parameters was found for adrenaline detection, indicating that electron transfer reaction occurs in tandem with proton transfer.https://www.mdpi.com/2673-3293/6/2/10Nafion–TMS[Ru(bpy)<sub>3</sub>]<sup>2+</sup>[Ru(phen)<sub>3</sub>]<sup>2+</sup>adrenalineglassy carbon
spellingShingle R. Aguilar-Sánchez
D. A. Durán-Tlachino
S. L. Cabrera-Hilerio
J. L. Gárate-Morales
Electrochemical Detection of Adrenaline Using Nafion–Trimethylsilyl and Nafion–Trimethylsilyl–Ru<sup>2+</sup>-Complex Modified Electrodes
Electrochem
Nafion–TMS
[Ru(bpy)<sub>3</sub>]<sup>2+</sup>
[Ru(phen)<sub>3</sub>]<sup>2+</sup>
adrenaline
glassy carbon
title Electrochemical Detection of Adrenaline Using Nafion–Trimethylsilyl and Nafion–Trimethylsilyl–Ru<sup>2+</sup>-Complex Modified Electrodes
title_full Electrochemical Detection of Adrenaline Using Nafion–Trimethylsilyl and Nafion–Trimethylsilyl–Ru<sup>2+</sup>-Complex Modified Electrodes
title_fullStr Electrochemical Detection of Adrenaline Using Nafion–Trimethylsilyl and Nafion–Trimethylsilyl–Ru<sup>2+</sup>-Complex Modified Electrodes
title_full_unstemmed Electrochemical Detection of Adrenaline Using Nafion–Trimethylsilyl and Nafion–Trimethylsilyl–Ru<sup>2+</sup>-Complex Modified Electrodes
title_short Electrochemical Detection of Adrenaline Using Nafion–Trimethylsilyl and Nafion–Trimethylsilyl–Ru<sup>2+</sup>-Complex Modified Electrodes
title_sort electrochemical detection of adrenaline using nafion trimethylsilyl and nafion trimethylsilyl ru sup 2 sup complex modified electrodes
topic Nafion–TMS
[Ru(bpy)<sub>3</sub>]<sup>2+</sup>
[Ru(phen)<sub>3</sub>]<sup>2+</sup>
adrenaline
glassy carbon
url https://www.mdpi.com/2673-3293/6/2/10
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AT slcabrerahilerio electrochemicaldetectionofadrenalineusingnafiontrimethylsilylandnafiontrimethylsilylrusup2supcomplexmodifiedelectrodes
AT jlgaratemorales electrochemicaldetectionofadrenalineusingnafiontrimethylsilylandnafiontrimethylsilylrusup2supcomplexmodifiedelectrodes