Repository of Research and Investigative Information

Repository of Research and Investigative Information

Shahid Sadoughi University of Medical Sciences

Construction of a nanocomposite sensor by the modification of a carbon-paste electrode with reduced graphene oxide and a hydroquinone derivative: simultaneous determination of glutathione and penicillamine

(2015) Construction of a nanocomposite sensor by the modification of a carbon-paste electrode with reduced graphene oxide and a hydroquinone derivative: simultaneous determination of glutathione and penicillamine. Analytical Methods. pp. 5538-5544. ISSN 1759-9660

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Abstract

The present study reports a sensor for the determination of glutathione using a carbon-paste electrode modified with reduced graphene oxide (RGO) and 10,10-dimethyl-7(3,4-dihydroxyphenyl)-10,11-dihydrochromeno4,3-bchromene-6,8(7H,9H)-dione (DDDC) as a mediator. Graphene nanosheets were obtained through the chemical reduction of graphene oxide using hydrazine. A pair of well-defined DDDC redox peaks was obtained at the modified electrode by direct electron transfer between DDDC and CPE. The novel sensor revealed suitable electrocatalytic activity toward the oxidation of glutathione (Glu). Voltammetric peak currents showed a linear response for Glu in the range of 0.08-100 mu M with a detection limit (based on 3s(bl)/m) of 0.02 mu M. The results exhibited an efficient catalytic activity of the electrode for the electro-oxidation of Glu, which led to a reduction in its over-potential by more than 507 mV. In addition, voltammetric investigations of Glu and penicillamine (PA) showed two separate peaks at the modified electrode, thus the simultaneous determination of Glu and PA in the real samples was applied at the proposed electrode.

Item Type: Article
Keywords: electrocatalytic determination voltammetric determination nanoparticles acid isoproterenol homocysteine epinephrine efficient mediator cysteine Chemistry Food Science & Technology Spectroscopy
Page Range: pp. 5538-5544
Journal or Publication Title: Analytical Methods
Journal Index: WoS
Volume: 7
Number: 13
Identification Number: https://doi.org/10.1039/c5ay00549c
ISSN: 1759-9660
Depositing User: Mr mahdi sharifi
URI: http://eprints.ssu.ac.ir/id/eprint/29369

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