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Array of Miniaturized Amperometric Gas Sensors Using Atomic Gold Decorated Pt/PANI Electrodes in Room Temperature Ionic Liquid Films

Miniaturized sensors possess many advantages, such as rapid response, easy chip integration, a possible lower concentration of target compound detection, etc. However, a major issue reported is a low signal response. In this study, a catalyst, the atomic gold clusters of Au(n) where n = 2, was decor...

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Autores principales: Faricha, Anifatul, Yoshida, Shohei, Chakraborty, Parthojit, Okamoto, Keisuke, Chang, Tso-Fu Mark, Sone, Masato, Nakamoto, Takamichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10141993/
https://www.ncbi.nlm.nih.gov/pubmed/37112472
http://dx.doi.org/10.3390/s23084132
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author Faricha, Anifatul
Yoshida, Shohei
Chakraborty, Parthojit
Okamoto, Keisuke
Chang, Tso-Fu Mark
Sone, Masato
Nakamoto, Takamichi
author_facet Faricha, Anifatul
Yoshida, Shohei
Chakraborty, Parthojit
Okamoto, Keisuke
Chang, Tso-Fu Mark
Sone, Masato
Nakamoto, Takamichi
author_sort Faricha, Anifatul
collection PubMed
description Miniaturized sensors possess many advantages, such as rapid response, easy chip integration, a possible lower concentration of target compound detection, etc. However, a major issue reported is a low signal response. In this study, a catalyst, the atomic gold clusters of Au(n) where n = 2, was decorated at a platinum/polyaniline (Pt/PANI) working electrode to enhance the sensitivity of butanol isomers gas measurement. Isomer quantification is challenging because this compound has the same chemical formula and molar mass. Furthermore, to create a tiny sensor, a microliter of room-temperature ionic liquid was used as an electrolyte. The combination of the Au(2) clusters decorated Pt/PANI and room temperature ionic liquid with several fixed electrochemical potentials was explored to obtain a high solubility of each analyte. According to the results, the presence of Au(2) clusters increased the current density due to electrocatalytic activity compared to the electrode without Au(2) clusters. In addition, the Au(2) clusters on the modified electrode had a more linear concentration dependency trend than the modified electrode without atomic gold clusters. Finally, the separation among butanol isomers was enhanced using different combination of room-temperature ionic liquids and fixed potentials.
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spelling pubmed-101419932023-04-29 Array of Miniaturized Amperometric Gas Sensors Using Atomic Gold Decorated Pt/PANI Electrodes in Room Temperature Ionic Liquid Films Faricha, Anifatul Yoshida, Shohei Chakraborty, Parthojit Okamoto, Keisuke Chang, Tso-Fu Mark Sone, Masato Nakamoto, Takamichi Sensors (Basel) Article Miniaturized sensors possess many advantages, such as rapid response, easy chip integration, a possible lower concentration of target compound detection, etc. However, a major issue reported is a low signal response. In this study, a catalyst, the atomic gold clusters of Au(n) where n = 2, was decorated at a platinum/polyaniline (Pt/PANI) working electrode to enhance the sensitivity of butanol isomers gas measurement. Isomer quantification is challenging because this compound has the same chemical formula and molar mass. Furthermore, to create a tiny sensor, a microliter of room-temperature ionic liquid was used as an electrolyte. The combination of the Au(2) clusters decorated Pt/PANI and room temperature ionic liquid with several fixed electrochemical potentials was explored to obtain a high solubility of each analyte. According to the results, the presence of Au(2) clusters increased the current density due to electrocatalytic activity compared to the electrode without Au(2) clusters. In addition, the Au(2) clusters on the modified electrode had a more linear concentration dependency trend than the modified electrode without atomic gold clusters. Finally, the separation among butanol isomers was enhanced using different combination of room-temperature ionic liquids and fixed potentials. MDPI 2023-04-20 /pmc/articles/PMC10141993/ /pubmed/37112472 http://dx.doi.org/10.3390/s23084132 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Faricha, Anifatul
Yoshida, Shohei
Chakraborty, Parthojit
Okamoto, Keisuke
Chang, Tso-Fu Mark
Sone, Masato
Nakamoto, Takamichi
Array of Miniaturized Amperometric Gas Sensors Using Atomic Gold Decorated Pt/PANI Electrodes in Room Temperature Ionic Liquid Films
title Array of Miniaturized Amperometric Gas Sensors Using Atomic Gold Decorated Pt/PANI Electrodes in Room Temperature Ionic Liquid Films
title_full Array of Miniaturized Amperometric Gas Sensors Using Atomic Gold Decorated Pt/PANI Electrodes in Room Temperature Ionic Liquid Films
title_fullStr Array of Miniaturized Amperometric Gas Sensors Using Atomic Gold Decorated Pt/PANI Electrodes in Room Temperature Ionic Liquid Films
title_full_unstemmed Array of Miniaturized Amperometric Gas Sensors Using Atomic Gold Decorated Pt/PANI Electrodes in Room Temperature Ionic Liquid Films
title_short Array of Miniaturized Amperometric Gas Sensors Using Atomic Gold Decorated Pt/PANI Electrodes in Room Temperature Ionic Liquid Films
title_sort array of miniaturized amperometric gas sensors using atomic gold decorated pt/pani electrodes in room temperature ionic liquid films
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10141993/
https://www.ncbi.nlm.nih.gov/pubmed/37112472
http://dx.doi.org/10.3390/s23084132
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