An inverted pyramidal metasurface was designed, fabricated, and studied at the nanoscale level for the development of a label-free pathogen detection on a chip platform that merges nanotechnology and surface-enhanced Raman scattering (SERS). Based on the integration and synergy of these ingredients, a virus immunoassay was proposed as a relevant proof of concept for very sensitive detection of hepatitis A virus, for the first time to our best knowledge, in a very small volume (2 ?L), without complex signal amplification, allowing to detect a minimal virus concentration of 13 pg/mL. The proposed work aims to develop a high-flux and high-accuracy surface-enhanced Raman spectroscopy (SERS) nanobiosensor for the detection of pathogens to provide an effective method for early and easy water monitoring, which can be fast and convenient.

Plasmonic Metasurfaces Based on Pyramidal Nanoholes for High-Efficiency SERS Biosensing

Palermo G;Rippa M;Vestri A;Castagna R;De Luca A
;
Petti L
2021

Abstract

An inverted pyramidal metasurface was designed, fabricated, and studied at the nanoscale level for the development of a label-free pathogen detection on a chip platform that merges nanotechnology and surface-enhanced Raman scattering (SERS). Based on the integration and synergy of these ingredients, a virus immunoassay was proposed as a relevant proof of concept for very sensitive detection of hepatitis A virus, for the first time to our best knowledge, in a very small volume (2 ?L), without complex signal amplification, allowing to detect a minimal virus concentration of 13 pg/mL. The proposed work aims to develop a high-flux and high-accuracy surface-enhanced Raman spectroscopy (SERS) nanobiosensor for the detection of pathogens to provide an effective method for early and easy water monitoring, which can be fast and convenient.
2021
Istituto di Scienze Applicate e Sistemi Intelligenti "Eduardo Caianiello" - ISASI
Inglese
13
43715
43725
11
http://www.scopus.com/record/display.url?eid=2-s2.0-85115194570&origin=inward
Esperti anonimi
NANOMATERIALS
METASURFACES
SERS
BIOSENSING
Internazionale
Elettronico
11
info:eu-repo/semantics/article
262
Palermo, G; Rippa, M; Conti, Y; Vestri, A; Castagna, R; Fusco, G; Suffredini, E; Zhou, J; Zyss, J; De Luca, A; Petti, L
01 Contributo su Rivista::01.01 Articolo in rivista
none
   Design and development of environmental sensors for the research of microbiological and chemical contaminants hazardous to health
   H2OSAFETY
   Fund for Development and Cohesion (FSC) Proof of Concept projects (D.D. 07/06/19 prot. no. 1096, POC01_00109)
   POC01_00109

   Multiplex nanostructured platform for label-free detectionof food-borne pathogens and carcinogenic pesticides
   MultiPath
   European Regional Developmen Fund, FESR of POR Campania 2014−2020, projects for the technological transfer and first industrialization of high-potential innovative companies for the fight against oncologicalpathologies-Campania Terra del Buono Program
   B63D18000140007
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/432310
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