An Electrochemical Sensor Based on Carbon Paper Modified with Graphite Powder for Sensitive Determination of Sunset Yellow and Tartrazine in Drinks

被引:37
作者
Stozhko, Natalia Yu [1 ]
Khamzina, Ekaterina, I [1 ,2 ]
Bukharinova, Maria A. [2 ]
Tarasov, Aleksey, V [2 ]
机构
[1] Ural State Univ Econ, Dept Phys & Chem, 8 Marta St 62, Ekaterinburg 620144, Russia
[2] Ural State Univ Econ, Sci & Innovat Ctr Sensor Technol, 8 Marta St 62, Ekaterinburg 620144, Russia
基金
英国科研创新办公室;
关键词
food colorants; Sunset Yellow; Tartrazine; carbon paper; carbon veil; electrochemical sensor; modified electrode; graphite powder; voltammetry; soft and alcoholic drinks; SIMULTANEOUS VOLTAMMETRIC DETERMINATION; FOOD AZO DYES; SYNTHETIC COLORANTS; GRAPHENE OXIDE; SPECTROPHOTOMETRIC DETERMINATION; SOFT DRINKS; NANOCOMPOSITE; EXTRACTION; NANOPARTICLES; SEPARATION;
D O I
10.3390/s22114092
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The paper describes the development of an electrochemical sensor to be used for the determination of synthetic food colorants such as Sunset Yellow FCF (SY) and Tartrazine (TZ). The sensor is a carbon paper (CP) electrode, manufactured by using hot lamination technology and volume modified with fine-grained graphite powder (GrP). The sensor (GrP/CP) was characterized by scanning electron microscopy, energy dispersive spectrometry, electrochemical impedance analysis, cyclic, linear sweep and differential pulse voltammetry. The mechanism of SY and TZ electrochemical oxidation on GrP/CP was studied. The developed sensor has good electron transfer characteristics and low electron resistance, high sensitivity and selectivity. Applying the differential pulse mode, linear dynamic ranges of 0.005-1.0 mu M and 0.02-7.5 mu M with limits of detection of 0.78 nM and 8.2 nM for SY and TZ, respectively, were obtained. The sensor was used to detect SY and TZ in non-alcoholic and alcoholic drinks. The results obtained from drink analysis prove good reproducibility (RSD <= 0.072) and accuracy (recovery 96-104%).
引用
收藏
页数:19
相关论文
共 63 条
[1]   Health safety issues of synthetic food colorants [J].
Amchova, Petra ;
Kotolova, Hana ;
Ruda-Kucerova, Jana .
REGULATORY TOXICOLOGY AND PHARMACOLOGY, 2015, 73 (03) :914-922
[2]   Molybdenum trioxide incorporated in a carbon paste as a sensitive device for bisphenol A monitoring [J].
Antoniazzi, Cristiane ;
de Lima, Camila Alves ;
Marangoni, Rafael ;
de Castro, Eryza Guimaraes ;
Santana, Edson Roberto ;
Spinelli, Almir .
MICROCHEMICAL JOURNAL, 2020, 159
[3]   Simultaneous Voltammetric Determination of Synthetic Colorants in Foods Using a Magnetic Core-Shell Fe3O4@SiO2/MWCNTs Nanocomposite Modified Carbon Paste Electrode [J].
Arvand, Majid ;
Parhizi, Yasaman ;
Mirfathi, Seyed Hadi .
FOOD ANALYTICAL METHODS, 2016, 9 (04) :863-875
[4]   Ultrasensitive detection of food colorant sunset yellow using nickel nanoparticles promoted lettuce-like spinel Co3O4 anchored GO nanosheets [J].
Balram, Deepak ;
Lian, Kuang-Yow ;
Sebastian, Neethu ;
Al-Mubaddel, Fahad S. ;
Noman, Muhammad Tayyab .
FOOD AND CHEMICAL TOXICOLOGY, 2022, 159
[5]  
Bard A., 2000, ELECTROCHEMICAL METH
[6]   Binding of carmoisine, a food colorant, with hemoglobin: Spectroscopic and calorimetric studies [J].
Basu, Anirban ;
Kumar, Gopinatha Suresh .
FOOD RESEARCH INTERNATIONAL, 2015, 72 :54-61
[7]   A novel voltammetric platform based on dysprosium oxide for the sensitive determination of sunset yellow in the presence of tartrazine [J].
Baytak, Aysegul Kutluay ;
Akbas, Emine ;
Aslanoglu, Mehmet .
ANALYTICA CHIMICA ACTA, 2019, 1087 :93-103
[8]   Electroanalytical sensing of dyes and colorants [J].
Bessegato, Guilherme G. ;
Brugnera, Michelle F. ;
Boldrin Zanoni, Maria Valnice .
CURRENT OPINION IN ELECTROCHEMISTRY, 2019, 16 :134-142
[9]   Development of highly sensitive and selective sensor based on molecular imprinted polydopamine-coated silica nanoparticles for electrochemical determination of sunset yellow [J].
Bonyadi, S. ;
Ghanbari, Kh. .
MICROCHEMICAL JOURNAL, 2021, 167
[10]   Electrochemical Sensor Based on a Carbon Veil Modified by Phytosynthesized Gold Nanoparticles for Determination of Ascorbic Acid [J].
Brainina, Khiena Z. ;
Bukharinova, Maria A. ;
Stozhko, Natalia Yu. ;
Sokolkov, Sergey V. ;
Tarasov, Aleksey V. ;
Vidrevich, Marina B. .
SENSORS, 2020, 20 (06)