Single-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators

Nano-electro-mechanical system-based mass spectrometry holds promise for detecting supramolecular assemblies at large molecular weights, but its efficiency is too poor to be practical. Sage et al. overcome this problem using a nanomechanical resonator array, which significantly decreases detection t...

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Autores principales: Eric Sage, Marc Sansa, Shawn Fostner, Martial Defoort, Marc Gély, Akshay K. Naik, Robert Morel, Laurent Duraffourg, Michael L. Roukes, Thomas Alava, Guillaume Jourdan, Eric Colinet, Christophe Masselon, Ariel Brenac, Sébastien Hentz
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/0737d731408947399985bdcf6dad6497
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spelling oai:doaj.org-article:0737d731408947399985bdcf6dad64972021-12-02T16:50:07ZSingle-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators10.1038/s41467-018-05783-42041-1723https://doaj.org/article/0737d731408947399985bdcf6dad64972018-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-05783-4https://doaj.org/toc/2041-1723Nano-electro-mechanical system-based mass spectrometry holds promise for detecting supramolecular assemblies at large molecular weights, but its efficiency is too poor to be practical. Sage et al. overcome this problem using a nanomechanical resonator array, which significantly decreases detection time.Eric SageMarc SansaShawn FostnerMartial DefoortMarc GélyAkshay K. NaikRobert MorelLaurent DuraffourgMichael L. RoukesThomas AlavaGuillaume JourdanEric ColinetChristophe MasselonAriel BrenacSébastien HentzNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-8 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Eric Sage
Marc Sansa
Shawn Fostner
Martial Defoort
Marc Gély
Akshay K. Naik
Robert Morel
Laurent Duraffourg
Michael L. Roukes
Thomas Alava
Guillaume Jourdan
Eric Colinet
Christophe Masselon
Ariel Brenac
Sébastien Hentz
Single-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators
description Nano-electro-mechanical system-based mass spectrometry holds promise for detecting supramolecular assemblies at large molecular weights, but its efficiency is too poor to be practical. Sage et al. overcome this problem using a nanomechanical resonator array, which significantly decreases detection time.
format article
author Eric Sage
Marc Sansa
Shawn Fostner
Martial Defoort
Marc Gély
Akshay K. Naik
Robert Morel
Laurent Duraffourg
Michael L. Roukes
Thomas Alava
Guillaume Jourdan
Eric Colinet
Christophe Masselon
Ariel Brenac
Sébastien Hentz
author_facet Eric Sage
Marc Sansa
Shawn Fostner
Martial Defoort
Marc Gély
Akshay K. Naik
Robert Morel
Laurent Duraffourg
Michael L. Roukes
Thomas Alava
Guillaume Jourdan
Eric Colinet
Christophe Masselon
Ariel Brenac
Sébastien Hentz
author_sort Eric Sage
title Single-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators
title_short Single-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators
title_full Single-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators
title_fullStr Single-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators
title_full_unstemmed Single-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators
title_sort single-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/0737d731408947399985bdcf6dad6497
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