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Portable plasmonic nanoparticle sensor for rapid and visual monitoring of food freshness
期刊文章

Portable plasmonic nanoparticle sensor for rapid and visual monitoring of food freshness

S.-Y. Yi, P.-H. Cheng, C.-W. Hwang, J.-W. Jheng, T.-H. Yen 和 D. Wan
Food Chemistry, 卷.527
2026
Web of Science ID: WOS:001859587600001

摘要

Biogenic amines Colorimetric detection Food freshness Localized surface plasmon resonance Plasmonic refractometric sensors Color films Colorimetric analysis Colorimetry Gold Gold alloys Gold compounds Nanospheres Plastic bottles Red Shift Reflection Spoilage Surface plasmon resonance biogenic amine gold nanoparticle nanosphere polyethylene terephthalate putrescine silver nanoparticle Biogenic amines Colorimetric detection Food freshness Food spoilage Gold nanospheres Localized surface plasmon resonance Plasmonic refractometric sensor Plasmonics Refractometric sensors Visual monitoring Article beef colorimetry controlled study food food spoilage near infrared reflectance spectroscopy near infrared spectroscopy optical sensor refraction index salmonine surface plasmon resonance ultraviolet visible spectroscopy Plasmonics Refractive index
Biogenic amines (BAs) are important indicators of food spoilage, yet rapid and visual detection remains challenging. Herein, a portable optical freshness sensor (NanoOFS) was developed by assembling Ag nanoparticles (NPs), Au NPs and hollow gold nanospheres (HGNs) as monolayers on a flexible white polyethylene terephthalate substrate. During food spoilage, released BAs adsorb onto NP surfaces, altering the local refractive index and inducing localized surface plasmon resonance shifts, enabling both naked-eye colorimetric readouts and quantitative UV–vis-NIR reflectance analysis. The Ag NP-based films exhibited rapid color transitions, discernible by the naked eye within 15 s, whereas the Au-HGN hybrid films responded with pronounced spectral red-shifts detectable by reflectance measurements. Additionally, the sensor produced clear optical responses to multiple BAs, with negligible response to common atmospheric gases. In putrescine-spiked salmon and naturally spoiled salmon and beef, NanoOFS enabled rapid visual monitoring of freshness, indicating potential for on-site food quality assessment. © 2026 Elsevier Ltd.

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https://www.scopus.com/inward/record.uri?eid=2-s2.0-105047850208&doi=10.1016%2fj.foodchem.2026.150863&partnerID=40&md5=cc3a2122925304fada15322e02c439d1檢視

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