4.7 Article

Synchronously activated strontium aluminate nanoflakes anchored functionalized carbon nanofiber nanocomposite for sensitive amperometric detection of food additive: Propyl gallate

Journal

FOOD CHEMISTRY
Volume 389, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.foodchem.2022.133119

Keywords

Food additive; Propyl gallate; Electrochemical detection; Strontium aluminate; Carbon nanofibers

Funding

  1. Ministry of Science and Technology [Project-MOST-108-2221-E-027-063]

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A new electrochemical sensor using SrAl2O4/f-CNF nanocomposite as an electrode modifier was developed for the detection of propyl gallate (PG). The sensor showed wide linear range, low limit of detection, and high sensitivity. It has potential applications in food quality monitoring, particularly for the determination of PG.
The contemporary dietary pattern is ruined by taste enhancers, flavoring agents, and preservatives. Propyl gallate (PG) is an imperative phenolic antioxidant cast-off to inhibit the oxidative mutilation in foodstuffs thereby preventing rancidity. Determination and annihilation of PG are extensively concerned because of its probable lethal effects on human well-being. Herein, we report an electrochemical sensor using SrAl2O4/f-CNF nanocomposite as an efficient electrode modifier with peculiar synergistic quantum confinement effects supporting the formation of heterojunction to facilitate electron transportation between its counterparts. The structural, morphological, and crystalline features of SrAl2O4/f-CNF nanocomposite was thoroughly examined. The proposed sensor possesses a wide linear range (0.1-1104.75 mu M) with a remarkably low limit of detection (0.075 mu M) and sensitivity (1.142 mu A center dot mu M-1 center dot cm(-2)) measured at 0.2 V (vs. Ag/AgCl). The reliability of this sensor was evidenced through real-time monitoring of PG in edible oil which is beneficial for food quality monitoring and dropping the danger of abuse of PG in foods.

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