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  • Eskişehir Osmangazi Üniversitesi Mühendislik ve Mimarlık Fakültesi Dergisi
  • Volume:30 Issue:3
  • INVESTIGATION OF GOLD NANOPARTICLE MODIFICATION ON SCREEN PRINTED GOLD ELECTRODE BY ELECTROCHEMICAL ...

INVESTIGATION OF GOLD NANOPARTICLE MODIFICATION ON SCREEN PRINTED GOLD ELECTRODE BY ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY

Authors : Yucel KOC, Huseyin AVCİ
Pages : 389-396
Doi:10.31796/ogummf.1066433
View : 17 | Download : 29
Publication Date : 2022-12-21
Article Type : Research Paper
Abstract :Recently increasing attention has been paid to the development of highly sensitive and selective electrochemical sensors for accurate and cost-effective detection in various fields. In this study, gold nanoparticles insert ignore into journalissuearticles values(AuNPs); were electro-deposited onto screen printed gold electrode insert ignore into journalissuearticles values(SPGE); surfaces at different times to determine the optimum modification conditions. Determining the optimum modification for the SPGE surface, AuNP modification under −0.3 V potential with 2 mM HAuCl4 insert ignore into journalissuearticles values(in 0.5 M H2SO4); solution were investigated. In this case, for the optimum AuNP modification, electrochemical impedance spectroscopy insert ignore into journalissuearticles values(EIS); analysis was performed at the following deposition times: 30, 60, 90, 120, and 150 s. As a result of modeling the Nyquist graph obtained in the range of 10 kHz to 0.1 Hz with the EIS analysis based on the equivalent circuit model, the outcomes for each modification time were analyzed. After the modification with AuNPs, scanning electron microscope insert ignore into journalissuearticles values(SEM); images of the SPGE surfaces were discussed. As a result, the optimum deposition time was determined as 90 s by the analysis. This study can be used for electrochemical investigation and target detection in complex media in terms of AuNPs on SPGE surfaces with a detailed perspective for nanoparticle deposition.
Keywords : Screen printed electrode, Gold nanoparticle, Electrodeposition, Empedance spectroscopy

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