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Ultrasensitive and label-free molecular level detection enabled by light phase control in magnetoplasmonic nanoantennas

Systems allowing label-free molecular detection are expected to have enormous impact on biochemical sciences. Research focuses on materials and technologies based on exploiting localized surface plasmon resonances in metallic nanostructures. The reason for this focused attention is their suitability...

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Autores principales: Maccaferri, Nicolò, Gregorczyk, Keith, de Oliveira, Thales V. A. G., Kataja, Mikko, van Dijken, Sebastiaan, Pirzadeh, Zhaleh, Dmitriev, Alexandre, Åkerman, Johan, Knez, Mato, Vavassori, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4340560/
https://www.ncbi.nlm.nih.gov/pubmed/25639190
http://dx.doi.org/10.1038/ncomms7150
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author Maccaferri, Nicolò
Gregorczyk, Keith
de Oliveira, Thales V. A. G.
Kataja, Mikko
van Dijken, Sebastiaan
Pirzadeh, Zhaleh
Dmitriev, Alexandre
Åkerman, Johan
Knez, Mato
Vavassori, Paolo
author_facet Maccaferri, Nicolò
Gregorczyk, Keith
de Oliveira, Thales V. A. G.
Kataja, Mikko
van Dijken, Sebastiaan
Pirzadeh, Zhaleh
Dmitriev, Alexandre
Åkerman, Johan
Knez, Mato
Vavassori, Paolo
author_sort Maccaferri, Nicolò
collection PubMed
description Systems allowing label-free molecular detection are expected to have enormous impact on biochemical sciences. Research focuses on materials and technologies based on exploiting localized surface plasmon resonances in metallic nanostructures. The reason for this focused attention is their suitability for single molecule sensing, arising from intrinsically nanoscopic sensing volume, and the high sensitivity to the local environment. Here we propose an alternative route, which enables radically improved sensitivity compared torecently reported plasmon-based sensors. Such high sensitivity is achieved by exploiting the control of the phase of light in magnetoplasmonic nanoantennas. We demonstrate a manifold improvement of refractometric sensing figure-of-merit. Most remarkably, we show a raw surface sensitivity (i.e., without applying fitting procedures) of two orders of magnitude higher than the current values reported for nanoplasmonic sensors. Such sensitivity corresponds to a mass of ~0.8 ag per nanoantenna of polyamide-6.6 (n=1.51), which is representative for a large variety of polymers, peptides and proteins.
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spelling pubmed-43405602015-08-02 Ultrasensitive and label-free molecular level detection enabled by light phase control in magnetoplasmonic nanoantennas Maccaferri, Nicolò Gregorczyk, Keith de Oliveira, Thales V. A. G. Kataja, Mikko van Dijken, Sebastiaan Pirzadeh, Zhaleh Dmitriev, Alexandre Åkerman, Johan Knez, Mato Vavassori, Paolo Nat Commun Article Systems allowing label-free molecular detection are expected to have enormous impact on biochemical sciences. Research focuses on materials and technologies based on exploiting localized surface plasmon resonances in metallic nanostructures. The reason for this focused attention is their suitability for single molecule sensing, arising from intrinsically nanoscopic sensing volume, and the high sensitivity to the local environment. Here we propose an alternative route, which enables radically improved sensitivity compared torecently reported plasmon-based sensors. Such high sensitivity is achieved by exploiting the control of the phase of light in magnetoplasmonic nanoantennas. We demonstrate a manifold improvement of refractometric sensing figure-of-merit. Most remarkably, we show a raw surface sensitivity (i.e., without applying fitting procedures) of two orders of magnitude higher than the current values reported for nanoplasmonic sensors. Such sensitivity corresponds to a mass of ~0.8 ag per nanoantenna of polyamide-6.6 (n=1.51), which is representative for a large variety of polymers, peptides and proteins. 2015-02-02 /pmc/articles/PMC4340560/ /pubmed/25639190 http://dx.doi.org/10.1038/ncomms7150 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Maccaferri, Nicolò
Gregorczyk, Keith
de Oliveira, Thales V. A. G.
Kataja, Mikko
van Dijken, Sebastiaan
Pirzadeh, Zhaleh
Dmitriev, Alexandre
Åkerman, Johan
Knez, Mato
Vavassori, Paolo
Ultrasensitive and label-free molecular level detection enabled by light phase control in magnetoplasmonic nanoantennas
title Ultrasensitive and label-free molecular level detection enabled by light phase control in magnetoplasmonic nanoantennas
title_full Ultrasensitive and label-free molecular level detection enabled by light phase control in magnetoplasmonic nanoantennas
title_fullStr Ultrasensitive and label-free molecular level detection enabled by light phase control in magnetoplasmonic nanoantennas
title_full_unstemmed Ultrasensitive and label-free molecular level detection enabled by light phase control in magnetoplasmonic nanoantennas
title_short Ultrasensitive and label-free molecular level detection enabled by light phase control in magnetoplasmonic nanoantennas
title_sort ultrasensitive and label-free molecular level detection enabled by light phase control in magnetoplasmonic nanoantennas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4340560/
https://www.ncbi.nlm.nih.gov/pubmed/25639190
http://dx.doi.org/10.1038/ncomms7150
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