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Evaluation of phenolic antioxidant capacity in beverages based on laccase immobilized on screen- printed carbon electrode modified with graphene nanoplatelets and gold nanoparticles (CROSBI ID 285307)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Zrinski, Ivana ; Pungjunun, Kingkan ; Martinez, Sanja ; Zavašnik, Janez ; Stanković, Dalibor ; Kalcher, Kurt ; Mehmeti, Eda Evaluation of phenolic antioxidant capacity in beverages based on laccase immobilized on screen- printed carbon electrode modified with graphene nanoplatelets and gold nanoparticles // Microchemical journal, 152 (2020), 104282, 8. doi: 10.1016/j.microc.2019.104282

Podaci o odgovornosti

Zrinski, Ivana ; Pungjunun, Kingkan ; Martinez, Sanja ; Zavašnik, Janez ; Stanković, Dalibor ; Kalcher, Kurt ; Mehmeti, Eda

engleski

Evaluation of phenolic antioxidant capacity in beverages based on laccase immobilized on screen- printed carbon electrode modified with graphene nanoplatelets and gold nanoparticles

A simple and highly sensitive electrochemical biosensor based on laccase immobilized onto a gold nanoparticles/ graphene nanoplatelets-modified screen-printed carbon electrode (LACC/AuNP/GNPl/SPCE) was developed for the determination of hydroquinone (HQ) and other phenolic compounds. The biosensor shows excellent electrocatalytic activity towards oxidation of hydroquinone at a potential of -0.05 V (vs Ag/AgCl, 3 M KCl) in phosphate buffer as supporting electrolyte (0.1 M, pH 7.0) using hydrodynamic amperometry. Analytical characteristics uncover that the LACC/AuNP/GNPl/SPCE comprises a wide linear range for the dependence of the signal on HQ concentrations from 4 to 130 µM with a detection limit (3σ) of 1.5 µM. The repeatability (5 measurements, 100 µM hydroquinone) is ± 2% and the reproducibility (5 biosensors, 100 µM hydroquinone) is ± 3%. Interference studies of most common compounds with the determination of hydroquinone demonstrated negligible effects. Finally, the biosensor and the analytical method were applied to the determination of phenolic antioxidant capacity (AOC) in wine and blueberry syrup based on Trolox (6‑hydroxy‑2, 5, 7, 8-tetramethylchromane- 2-carboxylic acid) and hydroquinone equivalents. The results were evaluated by using their calibration curves which were satisfactory and agreed well with the results obtained by the reference method Trolox Equivalent Antioxidant Capacity assay (TEAC-Assay).

Antioxidants ; Biosensors ; Graphene nanoparticles ; UV/Vis spectrophotometry

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Podaci o izdanju

152

2020.

104282

8

objavljeno

0026-265X

10.1016/j.microc.2019.104282

Povezanost rada

Kemija, Kemijsko inženjerstvo

Poveznice
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