Field effect control of translocation dynamics in surround-gate nanopores

Controlling the speed of electrophoresis across a solid-state nanopore is crucial for single-molecule sensing and sequencing. Here, a gate-controlled nanopore is able to trap and slow-down the translocation dynamics of nanoparticles by balancing the electrophoretic and hydrodynamic drag forces.

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Autores principales: Makusu Tsutsui, Sou Ryuzaki, Kazumichi Yokota, Yuhui He, Takashi Washio, Kaoru Tamada, Tomoji Kawai
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/cb032505ec604fee9df24103c4379864
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spelling oai:doaj.org-article:cb032505ec604fee9df24103c43798642021-12-02T15:52:28ZField effect control of translocation dynamics in surround-gate nanopores10.1038/s43246-021-00132-32662-4443https://doaj.org/article/cb032505ec604fee9df24103c43798642021-03-01T00:00:00Zhttps://doi.org/10.1038/s43246-021-00132-3https://doaj.org/toc/2662-4443Controlling the speed of electrophoresis across a solid-state nanopore is crucial for single-molecule sensing and sequencing. Here, a gate-controlled nanopore is able to trap and slow-down the translocation dynamics of nanoparticles by balancing the electrophoretic and hydrodynamic drag forces.Makusu TsutsuiSou RyuzakiKazumichi YokotaYuhui HeTakashi WashioKaoru TamadaTomoji KawaiNature PortfolioarticleMaterials of engineering and construction. Mechanics of materialsTA401-492ENCommunications Materials, Vol 2, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Materials of engineering and construction. Mechanics of materials
TA401-492
spellingShingle Materials of engineering and construction. Mechanics of materials
TA401-492
Makusu Tsutsui
Sou Ryuzaki
Kazumichi Yokota
Yuhui He
Takashi Washio
Kaoru Tamada
Tomoji Kawai
Field effect control of translocation dynamics in surround-gate nanopores
description Controlling the speed of electrophoresis across a solid-state nanopore is crucial for single-molecule sensing and sequencing. Here, a gate-controlled nanopore is able to trap and slow-down the translocation dynamics of nanoparticles by balancing the electrophoretic and hydrodynamic drag forces.
format article
author Makusu Tsutsui
Sou Ryuzaki
Kazumichi Yokota
Yuhui He
Takashi Washio
Kaoru Tamada
Tomoji Kawai
author_facet Makusu Tsutsui
Sou Ryuzaki
Kazumichi Yokota
Yuhui He
Takashi Washio
Kaoru Tamada
Tomoji Kawai
author_sort Makusu Tsutsui
title Field effect control of translocation dynamics in surround-gate nanopores
title_short Field effect control of translocation dynamics in surround-gate nanopores
title_full Field effect control of translocation dynamics in surround-gate nanopores
title_fullStr Field effect control of translocation dynamics in surround-gate nanopores
title_full_unstemmed Field effect control of translocation dynamics in surround-gate nanopores
title_sort field effect control of translocation dynamics in surround-gate nanopores
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/cb032505ec604fee9df24103c4379864
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