The influence of chitosan hydrogel coating on different redox probes kinetics - Open Research Data - Bridge of Knowledge

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The influence of chitosan hydrogel coating on different redox probes kinetics

Description

This dataset contains cyclic voltammetry studies of three redox probes: 1 mM K3[Fe(CN)6], [K4Fe(CN)6], C12H14FeO2, and [Ru(NH3)6]Cl2 dissolved in 0.1 M KCl or PBS as the primary electrolyte. The studies are made for glassy carbon electrode (GC) and glassy carbon electrode covered with thin chitosan hydrogel membrane (C2A2). Cyclic voltammograms were registered with scan rates between 10 and 1000 mV/s, and in the potential range −0.35 V to 0.65 V. 
 
The glassy carbon electrode (GCE, 3.0 mm diameter) was first polished with Al2O3 powder (0.3 mm) using a polishing kit from Buehler, rinsed with deionized water from Hydrolab Poland, and then dried under a continuous stream of nitrogen at room temperature. Then 5 μL of chitosan hydrogel was applied to the surface thus prepared using an automatic pipette and dried in a stream of nitrogen at room temperature for 30 min. The measuring system consisted of a self-designed vessel, the GCE and Ag/AgCl electrodes from Mineral, and the Pt wire came from Mennica Polska. These measurements were taken using a Methron Autolab potentiostat/galvanostat, M204 equipped with FRA32M electrochemical impedance spectroscopy module with operating system Nova 2.15. The electrochemical studies of the prepared electrodes were evaluated in a three-electrode system, with a modified GCE as a working electrode, an Ag/AgCl (0.1 M KCl) reference electrode, and a platinum mesh as a counter electrode.
 
These results are part of the manuscript: https://www.sciencedirect.com/science/article/pii/S156753942400166X

Dataset file

kinetics.zip
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License:
Creative Commons: by 4.0 open in new tab
CC BY
Attribution
Raw data:
Data contained in dataset was not processed.

Details

Year of publication:
2024
Verification date:
2024-10-18
Dataset language:
English
Fields of science:
  • materials engineering (Engineering and Technology)
  • chemical sciences (Natural sciences)
DOI:
DOI ID 10.34808/zjte-af31 open in new tab
Funding:
Series:
Verified by:
Gdańsk University of Technology

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