Rapid and ultralow level SERS detection of ethylparaben using silver nanoprisms functionalized sea urchin-like Zinc oxide nanorod arrays for food safety analysis - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Sensors and Actuators A: Physical Année : 2022

Rapid and ultralow level SERS detection of ethylparaben using silver nanoprisms functionalized sea urchin-like Zinc oxide nanorod arrays for food safety analysis

Résumé

Surface enhanced Raman spectroscopy (SERS) offers a tremendous opportunity to sense food additives in a fast, flexible and ultrasensitive mode. In the present study, we have designed silver nanoprism (AgNPr) functionalized Zinc Oxide (ZnO) hetero architectures for SERS sensing of food preservatives such as ethylparaben (EP). ZnO nanorods (NRs) were found to be formed which organized into sea urchin-like morphology via a facile hydrothermal process. While varying the growth time from 3 to 72 h, the nanorod length was found to be enhanced from 500 to 1900 nm range. The effect of morphology of as-fabricated substrates was well correlated with absorption and vibrational modes. Moreover, silver nanoprisms with peculiar triangular morphology with a size range of 20–80 nm were synthesized for functionalizing ZnO arrays; whose incorporation was further confirmed by EDS and XPS analysis. SERS studies demonstrated that AgNPr/ZnO NRs assembly exhibited synergistic Raman signal enhancement, which was modulated by the length of the nanorods. The highest SERS activity was exhibited by substrates with ∼1500 nm nanorod length. The reproducibility and reusability of optimized AgNPr/ZnO NRs substrates were demonstrated as well. The developed sensor exhibited highly specific real-time sensing of EP with sensitivity down to pico-molar levels; could be considered a good candidate for rapid, in situ identification of food preservatives for food safety applications.
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Dates et versions

hal-03835388 , version 1 (31-10-2022)

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Soumya Columbus, Abderrahmane Hamdi, Krithikadevi Ramachandran, Kais Daoudi, El Hadj Dogheche, et al.. Rapid and ultralow level SERS detection of ethylparaben using silver nanoprisms functionalized sea urchin-like Zinc oxide nanorod arrays for food safety analysis. Sensors and Actuators A: Physical , 2022, 347, pp.113962. ⟨10.1016/j.sna.2022.113962⟩. ⟨hal-03835388⟩
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