Form of presentation | Articles in international journals and collections |
Year of publication | 2022 |
Язык | английский |
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Ziyatdinova Guzel Kamilevna, author
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Kavieva Liya Radikovna, author
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Bibliographic description in the original language |
Kavieva, L. Sensitive voltammetric quantification of carminic acid in candies using selenium dioxide nanoparticles based electrode / L. Kavieva, G. Ziyatdinova // Food Chem. – 2022. – V. 386. – Article 132851. – 8 p. |
Annotation |
Carminic acid is a food colorant which concentration has to be controlled due to the possible negative health effects. Sensitive voltammetric method is developed for carminic acid determination using electrode modified with SeO2 nanoparticles (SeO2 NPs) and hexadecyltriphenylphosphonium bromide (HDTPPB) acting as dispersive agent for nanoparticles and electrode surface co-modifier. SeO2 NPs of 37–45 nm are uniformly distributed at the electrode increasing its electroactive area (41 ? 2 vs. 8.9 ? 0.2 mm2 for bare glassy carbon electrode (GCE)). Electrochemical impedance spectroscopy data confirm an 18.3-fold decrease of charge transfer resistance compared to GCE (12.7 ? 0.3 vs. 232 ? 7 kΩ, respectively). In differential pulse mode, the linear dynamic ranges of carminic acid are 0.010–2.5 and 2.5–10 μmol L−1 with a detection limit of 3.4 nmol L−1. The method is successfully employed in candies and lozenges for sore throat treatment. The approach is simple, reliable, and can be used as an alternative to chromatography in routine analysis. |
Keywords |
Food colorants, carminic acid, voltammetric detection, modified electrodes, nanoparticles, surfactants |
The name of the journal |
FOOD CHEMISTRY
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URL |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85127182352&doi=10.1016%2fj.foodchem.2022.132851&partnerID=40&md5=52b4841685c66af34920d120bd86d831 |
Please use this ID to quote from or refer to the card |
https://repository.kpfu.ru/eng/?p_id=266209&p_lang=2 |
Full metadata record |
Field DC |
Value |
Language |
dc.contributor.author |
Ziyatdinova Guzel Kamilevna |
ru_RU |
dc.contributor.author |
Kavieva Liya Radikovna |
ru_RU |
dc.date.accessioned |
2022-01-01T00:00:00Z |
ru_RU |
dc.date.available |
2022-01-01T00:00:00Z |
ru_RU |
dc.date.issued |
2022 |
ru_RU |
dc.identifier.citation |
Kavieva, L. Sensitive voltammetric quantification of carminic acid in candies using selenium dioxide nanoparticles based electrode / L. Kavieva, G. Ziyatdinova // Food Chem. – 2022. – V. 386. – Article 132851. – 8 p. |
ru_RU |
dc.identifier.uri |
https://repository.kpfu.ru/eng/?p_id=266209&p_lang=2 |
ru_RU |
dc.description.abstract |
FOOD CHEMISTRY |
ru_RU |
dc.description.abstract |
Carminic acid is a food colorant which concentration has to be controlled due to the possible negative health effects. Sensitive voltammetric method is developed for carminic acid determination using electrode modified with SeO2 nanoparticles (SeO2 NPs) and hexadecyltriphenylphosphonium bromide (HDTPPB) acting as dispersive agent for nanoparticles and electrode surface co-modifier. SeO2 NPs of 37–45 nm are uniformly distributed at the electrode increasing its electroactive area (41 ? 2 vs. 8.9 ? 0.2 mm2 for bare glassy carbon electrode (GCE)). Electrochemical impedance spectroscopy data confirm an 18.3-fold decrease of charge transfer resistance compared to GCE (12.7 ? 0.3 vs. 232 ? 7 kΩ, respectively). In differential pulse mode, the linear dynamic ranges of carminic acid are 0.010–2.5 and 2.5–10 μmol L−1 with a detection limit of 3.4 nmol L−1. The method is successfully employed in candies and lozenges for sore throat treatment. The approach is simple, reliable, and can be used as an alternative to chromatography in routine analysis. |
ru_RU |
dc.language.iso |
ru |
ru_RU |
dc.subject |
Food colorants |
ru_RU |
dc.subject |
carminic acid |
ru_RU |
dc.subject |
voltammetric detection |
ru_RU |
dc.subject |
modified electrodes |
ru_RU |
dc.subject |
nanoparticles |
ru_RU |
dc.subject |
surfactants |
ru_RU |
dc.title |
Sensitive voltammetric quantification of carminic acid in candies using selenium dioxide nanoparticles based electrode |
ru_RU |
dc.type |
Articles in international journals and collections |
ru_RU |
|