Orbital - Vol. 13 No. 5 - October-December 2021
FULL PAPERS

The Theoretical Description for the Perylaldehyde Aldoxyme Anodic Electrochemical Determination, Assisted by the Novel Squaraine Dye Composite with Copper(ii) Sulfide Nanoparticles

Volodymyr Valentynovych Tkach
Chernivtsi National University, Chernivtsi
Marta V. Kushnir
Chernivtsi National University, hernivtsi
Yana G. Ivanushko
Bukovinian State Medical University, Chernivtsi
Sílvio Cesar de Oliveira
Universidade Federal de Mato Grosso do Sul
Petro I. Yagodynets´
Chernivtsi National University, Chernivtsi
Zholt O. Kormosh
East Ukrainian National University, Lutsk
Lucinda Vaz dos Reis
Universidade de Trás-os-Montes e Alto Douro
Published December 30, 2021
Keywords
  • perillaldehyde aldoxime; sugar substitute; electrochemical sensor; squaraine dye; copper sulfide; stable steady-state
How to Cite
(1)
Tkach, V. V.; Kushnir, M. V.; Ivanushko, Y. G.; de Oliveira, S. C.; Yagodynets´P. I.; Kormosh, Z. O.; dos Reis, L. V. The Theoretical Description for the Perylaldehyde Aldoxyme Anodic Electrochemical Determination, Assisted by the Novel Squaraine Dye Composite With Copper(ii) Sulfide Nanoparticles. Orbital: Electron. J. Chem. 2021, 13, 420-424.

Abstract

In this work the perillaldehyde aldoxime electrochemical determination on an anode, modified by squaraine dye composite with copper sulfide nanoparticles is analyzed. The electroanalytical process involves the formation of trivalent copper species, capable to oxidize the analyte by two parallel mechanisms. The correspondent mathematical model, correspondent to both of them, has been developed and analyzed by means of linear stability theory and bifurcation analysis. The model analysis clearly shows that the composite of a squaraine dye in organic phase and bivalent copper sulfide in the inorganic phase may be an efficient electrode modifier for perillaldehyde aldoxime electrochemical determination on an anode. The electroanalytical process will be mostly kinetically-controlled with the possibility of the transfer to diffusion-controlled mode. On the other hand, both oscillatory and monotonic instabilities may be realized in the electroanalytical process, and their probability will depend on the direction of the electroanalytical scenario in the concrete conditions, due to the possibility of the formation of ionic compounds in the pre-surface layer.

DOI: http://dx.doi.org/10.17807/orbital.v13i5.1501