Abstract
Neotame is an artificial sweetener with increasing consumption in recent years, excessive intake of it may bring potential health risk. In this work, a rapid method was developed to detect neotame in instant grain beverages, which was based on surface-enhanced Raman scattering (SERS) technique and filter paper-based silver nanoparticles (AgNPs@FP) substrates. The designed substrate exhibits good SERS activity with an enhancement factor of 105 because of the synergistic effect of the concentrated silver nanoparticles and filter paper. Meanwhile, the stability and repeatability of this fabricated substrate have been investigated with the relative standard deviation of 6.1%. In addition, it shows an excellent linear relationship (R2 = 0.997) between the SERS signal and the logarithm concentration of neotame with a wide concentration range (0.05-5 g/kg) in the quantitative analysis. The limit of detection of neotame can be as low as 0.01 g/kg in instant grain beverages, which is below the maximum allowable addition level for neotame in instant grain beverages set in China (GB2760-2014, 0.16 g/kg). The proposed method has great potential for the identification and quantification of neotame in food safety applications with high sensitivity.
Author supplied keywords
- Beverage industry
- Beverages
- Concentrated silver nanoparticles
- Designed substrate
- Fabricated substrate
- Filter paper
- Food industry
- Food safety
- Good sers activity
- Health and safety aspects
- Instant grain beverages
- Methods of nanofabrication and processing
- Nanofabrication
- Nanoparticles
- Nanotubes and nanostructured materials
- Neotame
- Paper-based silver nanoparticles substrates
- Potential health risk
- Products and commodities
- Silver
- Structure of solid clusters
- Surface enhanced raman scattering
- Surface-enhanced raman scattering technique
Cite
CITATION STYLE
Han, M., Wei, W., Lu, H., & Zhang, Z. (2020). Rapid and sensitive detection of neotame in instant grain beverages by paper-based silver nanoparticles substrates. Micro and Nano Letters, 15(15), 1099–1104. https://doi.org/10.1049/mnl.2020.0298
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