Authors | فاطمه نظری,سید مهدی قریشی,اسمائ خوبی |
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Journal | INT J BIOL MACROMOL |
Page number | 456 |
Volume number | 160 |
IF | ثبت نشده |
Paper Type | Full Paper |
Published At | 2020-05-26 |
Journal Grade | Scientific - research |
Journal Type | Electronic |
Journal Country | Iran, Islamic Republic Of |
Journal Index | SCOPUS ,JCR |
Abstract
In this study, preparation of a novel bio-sensor based on Fe3O4/chitosan nanocomposites reported for electro-chemical studies and determination of gallic acid (GA). Combination of chitosan with Fe3O4nanoparticles causes to improve oxidation current of the GA. Characterization of the nanocomposite is carried out by different tech-niques suchasX-raydiffraction, transmission electron microscopy, scanning electron microscopy, vibrating sam-ple magnetometer, electrochemical impedance spectroscopy and cyclic voltammetry. Furthermore, multivariate optimization strategy is applied for simultaneous optimization of the chemical and instrumental parameters. Moreover, electrochemical behavior of GA at the surface of the nano-structured sensor is studiedby various tech-niques such as chronoamperometry, chronocoulometry and linear sweep. Using these techniques, the diffusion coefficient (D = 5.05 × 10 −4 cm 2 s −1 and or 4.86 × 10 −4 cm 2 s −1 ), and the kinetic parameters containing the exchanging current density (j0=0.23μAcm−2 ) and electron transfer coefficient (α= 0.1) are determined for GA, respectively. Then, the detection limit for GA is found to be 12.1 nM with a broad linear dynamic range 0.5–300.0μM using differential pulse voltammetry DPV at the surface of the Fe3O4/chitosan sensor. Finally, the proposed method is successfully applied for the detection of the analyte in real samples.
tags: Bio-based sensor Fe3O4/chitosan nanocomposite Gallic acid Experimental design Electrochemical studies