4.7 Article

Electrocatalytic simultaneous determination of ascorbic acid, uric acid and L-Cysteine in real samples using quercetin silver nanoparticles-graphene nanosheets modified glassy carbon electrode

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APPLIED SURFACE SCIENCE
卷 375, 期 -, 页码 169-178

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.apsusc.2016.03.098

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Graphene nanosheets; Electrocatalytic determination; Silver nanoparticles; L-Cysteine; Ascorbic acid

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By immobilizing of quercetin at the surface of a glassy carbon electrode modified with silver nanoparticles and graphene nanosheets (Q-AgNPs-GNs-GCE) a new sensor has been fabricated. The cyclic voltammogram of Q-AgNPs-GNs-GCE shows a stable redox couple with surface confined characteristics. Q-AgNPs-GNs-GCE demonstrated a high catalytic activity for L-Cysteine (L-Cys) oxidation. Results indicated that L-Cys peak potential at Q-AgNPs-GNs-GCE shifted to less positive values compared to GNs-GCE or AgNPs-GCE. Also, the kinetic parameters such as the electron transfer coefficient, and the heterogeneous electron transfer rate constant, k', for the oxidation of L-Cys at the Q-AgNPs-GNs-GCE surface were estimated. In differential pulse voltammetric determination, the detection limit of L-Cys was obtained 0.28 and the calibration plots were linear within two ranges of 0.9-12.4 mu M and 12.4-538.5 mu M of L-Cys. Also, the proposed modified electrode is used for the simultaneous determinations of ascorbic acid (AA), uric acid (UA), and L-Cys. Finally, this study has demonstrated the practical analytical utility of the sensor for determination of AA in vitamin C tablet, L-Cys in a milk sample and UA in a human urine sample. Crown Copyright (C) 2016 Published by Elsevier B.V. All rights reserved.

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