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dc.contributor.author
Perez Mitta, Gonzalo
dc.contributor.author
Burr, Loïc
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Tunineti, Jimena S.
dc.contributor.author
Trautmann, Christina
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Toimil- Molares, María Eugenia
dc.contributor.author
Azzaroni, Omar
dc.date.available
2019-08-13T18:32:58Z
dc.date.issued
2016-01
dc.identifier.citation
Perez Mitta, Gonzalo; Burr, Loïc; Tunineti, Jimena S.; Trautmann, Christina; Toimil- Molares, María Eugenia; et al.; Noncovalent functionalization of solid-state nanopores via self-assembly of amphipols; Royal Society of Chemistry; Nanoscale; 8; 3; 1-2016; 1470-1478
dc.identifier.issn
2040-3372
dc.identifier.uri
http://hdl.handle.net/11336/81565
dc.description.abstract
In recent years there has been increasing interest in the development of new methods for conferring functional features to nanopore-based fluidic devices. In this work, we describe for the first time the noncovalent integration of amphoteric-amphipathic polymers, also known as "amphipols", into single conical nanopores in order to obtain signal-responsive chemical nanodevices. Highly-tapered conical nanopores were fabricated by single-sided chemical etching of polycarbonate foils. After etching, the surface of the conical nanopores was chemically modified, by first metallizing the surface via gold sputtering and then by amphiphilic self-assembly of the amphipol. The net charge of adsorbed amphipols was regulated via pH changes under the environmental conditions. The pH-dependent chemical equilibrium of the weak acidic and basic monomers facilitates the regulation of the ionic transport through the nanopore by adjusting the pH of the electrolyte solution. Our results demonstrate that functional amphipathic polymers are powerful building blocks for the surface modification of nanopores and might ultimately pave the way to a new means of integrating functional and/or responsive units within nanofluidic structures.
dc.format
application/pdf
dc.language.iso
eng
dc.publisher
Royal Society of Chemistry
dc.rights
info:eu-repo/semantics/openAccess
dc.rights.uri
https://creativecommons.org/licenses/by-nc-sa/2.5/ar/
dc.subject
Solid-State Nanopores
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Noncovalent Functionalization
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Nanofluidic Devices
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Lonic Rectifiers
dc.subject.classification
Físico-Química, Ciencia de los Polímeros, Electroquímica
dc.subject.classification
Ciencias Químicas
dc.subject.classification
CIENCIAS NATURALES Y EXACTAS
dc.title
Noncovalent functionalization of solid-state nanopores via self-assembly of amphipols
dc.type
info:eu-repo/semantics/article
dc.type
info:ar-repo/semantics/artículo
dc.type
info:eu-repo/semantics/publishedVersion
dc.date.updated
2019-05-23T20:34:21Z
dc.journal.volume
8
dc.journal.number
3
dc.journal.pagination
1470-1478
dc.journal.pais
Reino Unido
dc.journal.ciudad
Londres
dc.description.fil
Fil: Perez Mitta, Gonzalo. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - La Plata. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas. Universidad Nacional de La Plata. Facultad de Ciencias Exactas. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas; Argentina
dc.description.fil
Fil: Burr, Loïc. GSI Helmholtzzentrum für Schwerionenforschung; Alemania. Technische Universität Darmstadt. Materialwissenschaft; Alemania
dc.description.fil
Fil: Tunineti, Jimena S.. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - La Plata. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas. Universidad Nacional de La Plata. Facultad de Ciencias Exactas. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas; Argentina
dc.description.fil
Fil: Trautmann, Christina. GSI Helmholtzzentrum für Schwerionenforschung; Alemania. Technische Universität Darmstadt. Materialwissenschaft; Alemania
dc.description.fil
Fil: Toimil- Molares, María Eugenia. GSI Helmholtzzentrum für Schwerionenforschung; Alemania
dc.description.fil
Fil: Azzaroni, Omar. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - La Plata. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas. Universidad Nacional de La Plata. Facultad de Ciencias Exactas. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas; Argentina
dc.journal.title
Nanoscale
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/doi/http://dx.doi.org/10.1039/c5nr08190d
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/url/https://pubs.rsc.org/en/content/articlelanding/2016/NR/C5NR08190D
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