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Ag-CeO Based on Electrochemical Sensor for High-Efficient On-Site Detection of Nitrite in Aquaculture Water and Beverages. | LitMetric

AI Article Synopsis

  • Nitrite is a common nitrogenous compound that poses health risks to humans and aquatic life, making onsite detection crucial.
  • A new electrochemical sensor was developed using Ag-CeO and conductive carbon paste, which allows for quick and efficient nitrite analysis.
  • The sensor demonstrated a detection range of 40.0 μM to 500.0 μM, a detection limit of 4.3 μM, and it showed high accuracy and stability in testing nitrite in beverages and aquaculture water.

Article Abstract

Nitrite is one of the most common nitrogenous compounds, which is not only an important indicator of aquaculture water but also widely used as a food additive. Its potential toxicity poses a huge threat to aquatic products and human health. Therefore, it is important to develop a convenient and rapid sensor for the high-efficient onsite detection of nitrite. In this work, a novel electrochemical sensor was developed for the qualitative and quantitative analysis of nitrite. The developed nitrite electrochemical detection system is easily applied in onsite detection. The electrochemical working electrode was constructed based on the combination of Ag-CeO and conductive carbon paste (CPE) with excellent electrocatalysis activity and rapid electron transfer ability. By the application of the developed system and under the optimal conditions, the linear range was from 40.0 μM to 500.0 μM, and the detection limit was reduced to 4.3 μM. The recovery was between 92.1% and 108.1%, and the relative standard deviations (RSDs) were 0.49%~9.31%. The sensor exhibited superior reproducibility, high stability sensitivity, and anti-interference ability, confirming its effectiveness for nitrite analysis. Finally, the developed electrochemical sensor was successfully applied to detect nitrite in beverages and aquaculture water samples, indicating that this approach has great potential in onsite food testing and environmental monitoring.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11173993PMC
http://dx.doi.org/10.3390/molecules29112644DOI Listing

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