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Highly sensitive and rapid determination of sunset yellow in drinks using a low-cost carbon material-based electrochemical sensor
Author(s) -
Quang Thuan Tran,
Thi Tinh Phung,
Trung Quang Nguyen,
Giang Truong Le,
Corinne Lagrost
Publication year - 2019
Publication title -
analytical and bioanalytical chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.86
H-Index - 166
eISSN - 1618-2650
pISSN - 1618-2642
DOI - 10.1007/s00216-019-02155-9
Subject(s) - detection limit , electrochemical gas sensor , cyclic voltammetry , materials science , electrode , graphene , differential pulse voltammetry , analytical chemistry (journal) , electrochemistry , oxide , chemistry , nanotechnology , chromatography , metallurgy
Starting from simple graphite flakes, an electrochemical sensor for sunset yellow monitoring is developed by using a very simple and effective strategy. The direct electrochemical reduction of a suspension of exfoliated graphene oxide (GO) onto a glassy carbon electrode (GCE) surface leads to the electrodeposition of electrochemically reduced oxide at the surface, obtaining GCE/ERGO-modified electrodes. They are characterized by cyclic voltammetry (CV) measurements and field emission scanning electron spectroscopy (FE-SEM). The GCE/ERGO electrode has a high electrochemically active surface allowing efficient adsorption of SY. Using differential pulse voltammetry (DPV) technique with only 2 min accumulation, the GCE/ERGO sensor exhibits good performance to SY detection with a good linear calibration for concentration range varying 50-1000 nM (R 2  = 0.996) and limit of detection (LOD) estimated to 19.2 nM (equivalent to 8.9 μg L -1 ). The developed sensor possesses a very high sensitivity of 9 μA/μM while fabricated with only one component. This electrochemical sensor also displays a good reliability with RSD value of 2.13% (n = 7) and excellent reusability (signal response change < 3.5% after 6 measuring/cleaning cycles). The GCE/ERGO demonstrates a successful practical application for determination of sunset yellow in commercial soft drinks. Graphical abstract.

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