Disposable electrochemical sensor modified with gold nanostructures for rapid and eco-friendly nitrit

dc.creatorPaiva, João Vitor Fernandes
dc.creatorAzevedo, Daniel Araújo de
dc.creatorMachado, Sérgio Antonio Spinola
dc.creatorRomanholo, Pedro Victor Valadares
dc.creatorFelsner, Maria Lurdes
dc.creatorGalli, Andressa
dc.creatorSgobbi, Lívia Flório
dc.date.accessioned2026-09-18T14:39:18Z
dc.date.available2026-09-18T14:39:18Z
dc.date.issued2026
dc.description.abstractNitrite monitoring in drinking water is essential for public health due to its toxicological risks. Despite its relevance, the official Griess-based spectrophotometric method presents limitations such as bulky instrumentation, sample instability, and the need for centralized analysis. Electrochemical sensors offer a promising alternative for on-site and real-time detection; however, few have reached the market due to complex fabrication and insufficient analytical validation. In this work, we present a miniaturized and disposable electrochemical sensor for nitrite quantification in tap water. Gold nanostructures were electrodeposited onto screen-printed carbon electrodes via a one-step modification. As a key distinguishing feature, we conducted the full analytical validation directly in tap water — from calibration curve construction to all figures of merit, addressing matrix effects through the standard addition method. The sensor exhibited excellent linearity from 1 to 24 μmol L− 1 , with a limit of detection of 0.72 μmol L− 1 and a limit of quantification of 2.18 μmol L− 1 , both below the maximum levels established by the World Health Organization (WHO), Environmental Protection Agency (EPA), and Brazilian National Environment Council (CONAMA). For the first time, intermediate precision was evaluated using a nested design that considered different days, electrodes, and replicates. The results showed minimal variation between electrodes and days, while repeatability represented the main source of variability — an issue inherently mitigated by the single-use nature of the electrodes. Accuracy ranged from 92 % to 98 %, and no interference was observed from common contaminants, confirming the sensor’s selectivity. These results, along with a high Blue Applicability Grade Index (BAGI) score of 70.0, underscore the sensor’s reliability for nitrite detection in real matrices and its strong potential for commercial application, bridging the gap between academic research and real-world implementation.
dc.identifier.citationPAIVA, João Vitor F. et al. Disposable electrochemical sensor modified with gold nanostructures for rapid and eco-friendly nitrite detection in tap water: from fabrication to robust analytical validation. Microchemical Journal, Amsterdam, v. 220, e116358, 2026. DOI: 10.1016/j.microc.2025.116358. Disponível em: https://www.sciencedirect.com/science/article/pii/S0026265X25037087. Acesso em: 17 set. 2026.
dc.identifier.doi10.1016/j.microc.2025.116358
dc.identifier.issn0026-265X
dc.identifier.issne- 1095-9149
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S0026265X25037087
dc.language.isoeng
dc.publisher.countryHolanda
dc.publisher.departmentInstituto de Química - IQ (RMG)
dc.publisher.programPrograma de Pós-graduação em Química
dc.rightsAcesso Restrito
dc.subjectNitrite
dc.subjectTap water
dc.subjectAnalytical validation
dc.subjectAmperometric sensor
dc.subjectEnvironmental monitoring
dc.subjectScreen-printed electrode
dc.subject.ODS6 - Água potável e saneamento
dc.subject.ODS15 - Vida terrestre
dc.subject.ODS12 - Consumo e produção responsáveis
dc.subject.ODS3 - Saúde e bem-estar
dc.titleDisposable electrochemical sensor modified with gold nanostructures for rapid and eco-friendly nitrit
dc.typeArtigo

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