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Functionalized single-walled carbon nanotubes/polypyrrole composites for amperometric glucose biosensors

This article reports an amperometric glucose biosensor based on a new type of nanocomposite of polypyrrole (PPY) with p-phenyl sulfonate-functionalized single-walled carbon nanotubes (SWCNTs-PhSO(3)(−)). An environmentally friendly functionalization procedure of the SWCNTs in the presence of substit...

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Detalles Bibliográficos
Autores principales: Raicopol, Matei, Prună, Alina, Damian, Celina, Pilan, Luisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3716825/
https://www.ncbi.nlm.nih.gov/pubmed/23837703
http://dx.doi.org/10.1186/1556-276X-8-316
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author Raicopol, Matei
Prună, Alina
Damian, Celina
Pilan, Luisa
author_facet Raicopol, Matei
Prună, Alina
Damian, Celina
Pilan, Luisa
author_sort Raicopol, Matei
collection PubMed
description This article reports an amperometric glucose biosensor based on a new type of nanocomposite of polypyrrole (PPY) with p-phenyl sulfonate-functionalized single-walled carbon nanotubes (SWCNTs-PhSO(3)(−)). An environmentally friendly functionalization procedure of the SWCNTs in the presence of substituted aniline and an oxidative species was adopted. The nanocomposite-modified electrode exhibited excellent electrocatalytic activities towards the reduction or oxidation of H(2)O(2). This feature allowed us to use it as bioplatform on which glucose oxidase (GOx) was immobilized by entrapment in an electropolymerized PPY/SWCNTs-PhSO(3)(−) film for the construction of the glucose biosensor. The amperometric detection of glucose was assayed by applying a constant electrode potential value necessary to oxidize or reduce the enzymatically produced H(2)O(2) with minimal interference from the possible coexisting electroactive compounds. With the introduction of a thin film of Prussian blue (PB) at the substrate electrode surface, the PPY/GOx/SWCNTs-PhSO(3)(−)/PB system shows synergy between the PB and functionalized SWCNTs which amplifies greatly the electrode sensitivity when operated at low potentials. The biosensor showed good analytical performances in terms of low detection (0.01 mM), high sensitivity (approximately 6 μA mM(−1) cm(−2)), and wide linear range (0.02 to 6 mM). In addition, the effects of applied potential, the electroactive interference, and the stability of the biosensor were discussed. The facile procedure of immobilizing GOx used in the present work can promote the development of other oxidase-based biosensors which could have a practical application in clinical, food, and environmental analysis.
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spelling pubmed-37168252013-07-22 Functionalized single-walled carbon nanotubes/polypyrrole composites for amperometric glucose biosensors Raicopol, Matei Prună, Alina Damian, Celina Pilan, Luisa Nanoscale Res Lett Nano Express This article reports an amperometric glucose biosensor based on a new type of nanocomposite of polypyrrole (PPY) with p-phenyl sulfonate-functionalized single-walled carbon nanotubes (SWCNTs-PhSO(3)(−)). An environmentally friendly functionalization procedure of the SWCNTs in the presence of substituted aniline and an oxidative species was adopted. The nanocomposite-modified electrode exhibited excellent electrocatalytic activities towards the reduction or oxidation of H(2)O(2). This feature allowed us to use it as bioplatform on which glucose oxidase (GOx) was immobilized by entrapment in an electropolymerized PPY/SWCNTs-PhSO(3)(−) film for the construction of the glucose biosensor. The amperometric detection of glucose was assayed by applying a constant electrode potential value necessary to oxidize or reduce the enzymatically produced H(2)O(2) with minimal interference from the possible coexisting electroactive compounds. With the introduction of a thin film of Prussian blue (PB) at the substrate electrode surface, the PPY/GOx/SWCNTs-PhSO(3)(−)/PB system shows synergy between the PB and functionalized SWCNTs which amplifies greatly the electrode sensitivity when operated at low potentials. The biosensor showed good analytical performances in terms of low detection (0.01 mM), high sensitivity (approximately 6 μA mM(−1) cm(−2)), and wide linear range (0.02 to 6 mM). In addition, the effects of applied potential, the electroactive interference, and the stability of the biosensor were discussed. The facile procedure of immobilizing GOx used in the present work can promote the development of other oxidase-based biosensors which could have a practical application in clinical, food, and environmental analysis. Springer 2013-07-09 /pmc/articles/PMC3716825/ /pubmed/23837703 http://dx.doi.org/10.1186/1556-276X-8-316 Text en Copyright ©2013 Raicopol et al.; licensee Springer. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Nano Express
Raicopol, Matei
Prună, Alina
Damian, Celina
Pilan, Luisa
Functionalized single-walled carbon nanotubes/polypyrrole composites for amperometric glucose biosensors
title Functionalized single-walled carbon nanotubes/polypyrrole composites for amperometric glucose biosensors
title_full Functionalized single-walled carbon nanotubes/polypyrrole composites for amperometric glucose biosensors
title_fullStr Functionalized single-walled carbon nanotubes/polypyrrole composites for amperometric glucose biosensors
title_full_unstemmed Functionalized single-walled carbon nanotubes/polypyrrole composites for amperometric glucose biosensors
title_short Functionalized single-walled carbon nanotubes/polypyrrole composites for amperometric glucose biosensors
title_sort functionalized single-walled carbon nanotubes/polypyrrole composites for amperometric glucose biosensors
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3716825/
https://www.ncbi.nlm.nih.gov/pubmed/23837703
http://dx.doi.org/10.1186/1556-276X-8-316
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