Electrochemical impedimetric detection of kanamycin using molecular imprinting for food safety

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Elsevier

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info:eu-repo/semantics/closedAccess

Özet

In this work, molecularly imprinted kanamycin (KAN) electrodes were prepared using electrochemical polymerization of pyrrole (Py). First, a glassy carbon electrode was coated with an optimized volume of graphene oxide (GC/GO) to provide a high surface area electrode. Py is then polymerized on GC/GO electrode using cyclic voltammetry in the presence of KAN following by KAN removal using HCl (GC/GO-pPy-KAN*). Electrode preparation steps were also optimized using microscopic, spectroscopic, and electrochemical methods. Finally, the analytical performance of the prepared GC/GO-pPy-KAN* electrode was investigated for the determination of KAN. The limit of detection and the detection range was calculated as 5 nM and 5 nM–1 µM, respectively. The precision, accuracy, and interference studies showed good precision and relative error with minimum interference for the chosen substances. Moreover, real sample analysis was also performed using 4 different milk samples with good recovery values. Consequently, a novel, simple, and sensitive sensor was developed using an easy and low-cost fabrication method for the detection of KAN in food samples such as milk.

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Anahtar Kelimeler

Kanamycin, Sensor, Impedimetric Analysis, Electrochemistry, Molecular Imprinting

Kaynak

Microchemical Journal

WoS Q Değeri

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Cilt

160

Sayı

Part B

Künye

Işık, D., Şahin, S., Caglayan, M.O. and Üstündağ, Z., 2021. Electrochemical impedimetric detection of kanamycin using molecular imprinting for food safety. Microchemical Journal, 160, p.105713.

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