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Ionic Liquid-Polypyrrole-Gold Composites as Enhanced Enzyme Immobilization Platforms for Hydrogen Peroxide Sensing

In this work, three different aqueous solutions containing imidazole-based ILs with different alkyl chain lengths ([C(n)mim]Br, n = 2, 6, 12) were adopted as the medium for the synthesis of ionic liquid-polypyrrole (IL-PPy) composites. Herein, the ILs undertook the roles of the pyrrole solvent, the...

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Autores principales: Li, Meng, Wu, Jing, Su, Haiping, Tu, Yan, Shang, Yazhuo, He, Yifan, Liu, Honglai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6387225/
https://www.ncbi.nlm.nih.gov/pubmed/30717474
http://dx.doi.org/10.3390/s19030640
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author Li, Meng
Wu, Jing
Su, Haiping
Tu, Yan
Shang, Yazhuo
He, Yifan
Liu, Honglai
author_facet Li, Meng
Wu, Jing
Su, Haiping
Tu, Yan
Shang, Yazhuo
He, Yifan
Liu, Honglai
author_sort Li, Meng
collection PubMed
description In this work, three different aqueous solutions containing imidazole-based ILs with different alkyl chain lengths ([C(n)mim]Br, n = 2, 6, 12) were adopted as the medium for the synthesis of ionic liquid-polypyrrole (IL-PPy) composites. Herein, the ILs undertook the roles of the pyrrole solvent, the media for emulsion polymerization of PPy and PPy dopants, respectively. The electrochemical performances of the three IL-PPy composites on a glassy carbon electrode (GCE) were investigated by electrochemical experiments, which indicated that [C(12)mim]Br-PPy (C(12)-PPy) composites displayed better electrochemical performance due to their larger surface area and firmer immobilization on the GCE. Further, C(12)-PPy/GCE were decorated with Au microparticles by electrodeposition that can not only increase the conductivity, but also immobilize sufficient biomolecules on the electrode. Then, the obtained C(12)-PPy-Au/GCE with outstanding electrochemical performance was employed as a horseradish peroxidase (HRP) immobilization platform to fabricate a novel C(12)-PPy-Au-HRP/GCE biosensor for H(2)O(2) detection. The results showed that the prepared C(12)-PPy-Au-HRP/GCE biosensor exhibited high sensitivity, fast response, and a wide detection range as well as low detection limit towards H(2)O(2). This work not only provides an outstanding biomolecule immobilization matrix for the fabrication of highly sensitive biosensors, but also advances the understanding of the roles of ILs in improving the electrochemical performance of biosensors.
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spelling pubmed-63872252019-02-26 Ionic Liquid-Polypyrrole-Gold Composites as Enhanced Enzyme Immobilization Platforms for Hydrogen Peroxide Sensing Li, Meng Wu, Jing Su, Haiping Tu, Yan Shang, Yazhuo He, Yifan Liu, Honglai Sensors (Basel) Article In this work, three different aqueous solutions containing imidazole-based ILs with different alkyl chain lengths ([C(n)mim]Br, n = 2, 6, 12) were adopted as the medium for the synthesis of ionic liquid-polypyrrole (IL-PPy) composites. Herein, the ILs undertook the roles of the pyrrole solvent, the media for emulsion polymerization of PPy and PPy dopants, respectively. The electrochemical performances of the three IL-PPy composites on a glassy carbon electrode (GCE) were investigated by electrochemical experiments, which indicated that [C(12)mim]Br-PPy (C(12)-PPy) composites displayed better electrochemical performance due to their larger surface area and firmer immobilization on the GCE. Further, C(12)-PPy/GCE were decorated with Au microparticles by electrodeposition that can not only increase the conductivity, but also immobilize sufficient biomolecules on the electrode. Then, the obtained C(12)-PPy-Au/GCE with outstanding electrochemical performance was employed as a horseradish peroxidase (HRP) immobilization platform to fabricate a novel C(12)-PPy-Au-HRP/GCE biosensor for H(2)O(2) detection. The results showed that the prepared C(12)-PPy-Au-HRP/GCE biosensor exhibited high sensitivity, fast response, and a wide detection range as well as low detection limit towards H(2)O(2). This work not only provides an outstanding biomolecule immobilization matrix for the fabrication of highly sensitive biosensors, but also advances the understanding of the roles of ILs in improving the electrochemical performance of biosensors. MDPI 2019-02-03 /pmc/articles/PMC6387225/ /pubmed/30717474 http://dx.doi.org/10.3390/s19030640 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Meng
Wu, Jing
Su, Haiping
Tu, Yan
Shang, Yazhuo
He, Yifan
Liu, Honglai
Ionic Liquid-Polypyrrole-Gold Composites as Enhanced Enzyme Immobilization Platforms for Hydrogen Peroxide Sensing
title Ionic Liquid-Polypyrrole-Gold Composites as Enhanced Enzyme Immobilization Platforms for Hydrogen Peroxide Sensing
title_full Ionic Liquid-Polypyrrole-Gold Composites as Enhanced Enzyme Immobilization Platforms for Hydrogen Peroxide Sensing
title_fullStr Ionic Liquid-Polypyrrole-Gold Composites as Enhanced Enzyme Immobilization Platforms for Hydrogen Peroxide Sensing
title_full_unstemmed Ionic Liquid-Polypyrrole-Gold Composites as Enhanced Enzyme Immobilization Platforms for Hydrogen Peroxide Sensing
title_short Ionic Liquid-Polypyrrole-Gold Composites as Enhanced Enzyme Immobilization Platforms for Hydrogen Peroxide Sensing
title_sort ionic liquid-polypyrrole-gold composites as enhanced enzyme immobilization platforms for hydrogen peroxide sensing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6387225/
https://www.ncbi.nlm.nih.gov/pubmed/30717474
http://dx.doi.org/10.3390/s19030640
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