One‐Step Electrodeposition of Feather‐Like Au–Ag–CoO x ‐Based Composite Materials on Screen‐Printed Carb on Electrode for Sertraline Sensing

Sertraline (SRT) is a widely prescribed selective serotonin reuptake inhibitor used for the treatment of major depressive disorder, anxiety disorders, obsessive–compulsive disorder, and posttraumatic stress disorder. Accurate and sensitive determination of SRT is essential for therapeutic drug monitoring, dose optimization, pharmacokinetic studies, and the prevention of adverse effects associated with inappropriate drug exposure. In this study, a simple and sensitive electrochemical sensing platform was developed for the determination of SRT, achieving a detection limit at nanomolar levels. The sensor was fabricated by modifying the SPCE surface with feather‐like Au−Ag−CoO x ‐based multicomponent composite materials, which provided an enhanced electroactive interface for SRT oxidation. The structural and morphological properties of the prepared material were characterized using SEM, XRD, and AFM, while its electrochemical performance was investigated by voltammetric techniques. The Au−Ag−CoO x /SPCE sensor exhibited a markedly enhanced oxidation signal for SRT relative to the bare SPCE, confirming the electrocatalytic contribution of the Au−Ag−CoO x surface architecture. Under optimized conditions, the proposed sensor showed a linear response across the two linear ranges, from 2.0 × 10 −7 to 2.0 × 10 −6 M and 2.0 × 10 −6 to 2.0 × 10 −4 M, with a detection limit of 6.1 × 10 −8 M. The sensor also exhibited good selectivity against the testing interfering species, along with excellent repeatability and reproducibility, with RSD values of 1.46% and 1.75%, respectively, and acceptable long‐term stability by retaining approximately 85% of its initial response after 30 days. The practical applicability of the method was demonstrated through the analysis of SRT in pharmaceutical tablets, human serum, and water samples, yielding recovery values of 98.71%–102.35%, 97.45%–104.29%, and 100.80%–104.00%, respectively. Overall, the developed Au−Ag−CoO x /SPCE platform offers a reliable, cost‐effective, and sensitive approach for SRT determination in pharmaceutical, biological, and environmental samples.

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Publication Details

Journal
ChemPlusChem
Published
2026-09-30
DOI
https://doi.org/10.1002/cplu.70254
Primary Topic
Electrochemical sensors and biosensors
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article
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article

One‐Step Electrodeposition of Feather‐Like Au–Ag–CoO x ‐Based Composite Materials on Screen‐Printed Carb on Electrode for Sertraline Sensing

Hasan Saygın, Pattan‐Siddappa Ganesh, Cem Erkmen, Zeynep Türk et al.
ChemPlusChem
Electrochemical sensors and biosensors
article

One‐Step Electrodeposition of Feather‐Like Au–Ag–CoO x ‐Based Composite Materials on Screen‐Printed Carb on Electrode for Sertraline Sensing

Hasan Saygın, Pattan‐Siddappa Ganesh, Cem Erkmen, Zeynep Türk, Mustafa Ercan, Yiğit Ergun
article en

Abstract

Sertraline (SRT) is a widely prescribed selective serotonin reuptake inhibitor used for the treatment of major depressive disorder, anxiety disorders, obsessive–compulsive disorder, and posttraumatic stress disorder. Accurate and sensitive determination of SRT is essential for therapeutic drug monitoring, dose optimization, pharmacokinetic studies, and the prevention of adverse effects associated with inappropriate drug exposure. In this study, a simple and sensitive electrochemical sensing platform was developed for the determination of SRT, achieving a detection limit at nanomolar levels. The sensor was fabricated by modifying the SPCE surface with feather‐like Au−Ag−CoO x ‐based multicomponent composite materials, which provided an enhanced electroactive interface for SRT oxidation. The structural and morphological properties of the prepared material were characterized using SEM, XRD, and AFM, while its electrochemical performance was investigated by voltammetric techniques. The Au−Ag−CoO x /SPCE sensor exhibited a markedly enhanced oxidation signal for SRT relative to the bare SPCE, confirming the electrocatalytic contribution of the Au−Ag−CoO x surface architecture. Under optimized conditions, the proposed sensor showed a linear response across the two linear ranges, from 2.0 × 10 −7 to 2.0 × 10 −6 M and 2.0 × 10 −6 to 2.0 × 10 −4 M, with a detection limit of 6.1 × 10 −8 M. The sensor also exhibited good selectivity against the testing interfering species, along with excellent repeatability and reproducibility, with RSD values of 1.46% and 1.75%, respectively, and acceptable long‐term stability by retaining approximately 85% of its initial response after 30 days. The practical applicability of the method was demonstrated through the analysis of SRT in pharmaceutical tablets, human serum, and water samples, yielding recovery values of 98.71%–102.35%, 97.45%–104.29%, and 100.80%–104.00%, respectively. Overall, the developed Au−Ag−CoO x /SPCE platform offers a reliable, cost‐effective, and sensitive approach for SRT determination in pharmaceutical, biological, and environmental samples.

ChemPlusChemVol. 91(10)
Istanbul Aydın University (TR), Korea University of Technology and Education (KR)
Openalex Percentile: Top 22%
Electrochemical sensors and biosensors
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