Citation
Abstract
Environmental analysis and food safety control still depend on quick, precise nitrite monitoring. In response, the current work uses a one-step hydrothermal process to create a hollow SiO2@C core-shell material, which is then integrated into an electrochemical nitrite sensor. X-ray diffraction, high-resolution transmission electron microscopy, and scanning electron microscopy all confirm the homogeneous carbon coating and hollow structure, creating a strong foundation for charge transfer. The SiO2@C-modified electrode maintains linearity between 0.5 and 4650.0 µM and achieves a detection limit of 0.17 µM. Strong operational stability is demonstrated by the high repeatability (RSD = 1.23%) and the retention of 90.66% of the initial signal after 17 days at 4°C. Reliable performance in complex food matrices is confirmed by standard-addition assays in sausage and fermented bean curd, which provide recoveries of 95.53–100.03% and 98.15–99.83%, respectively. These findings establish the hollow SiO2@C sensor as a useful, highly sensitive instrument.
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Additional Metadata
| Item Type: | Article |
|---|---|
| Subject: | Chemistry (all) |
| Divisions: | Faculty of Engineering |
| DOI Number: | https://doi.org/10.1002/slct.202507225 |
| Publisher: | John Wiley and Sons Inc |
| Keywords: | Electrochemical sensor; Food samples; Hollow sio2@c; Nitrite |
| Sustainable Development Goals (SDGs): | SDG 3: Good Health and Well-being, SDG 12: Responsible Consumption and Production, SDG 2: Zero Hunger |
| Depositing User: | Ms. Siti Radziah Mohamed@mahmod |
| Date Deposited: | 21 Jul 2026 01:24 |
| Last Modified: | 21 Jul 2026 01:24 |
| Altmetrics: | https://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1002/slct.202507225 |
| URI: | http://psasir.upm.edu.my/id/eprint/125219 |
| Statistic Details: | View Download Statistic |
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