Multiwall Carbon Nanotubes Modified Carbon Paste Electrode for Determination of Copper(II) by Potentiometric and Impedimetric Methods
A chemically modified carbon paste electrode with multiwall carbon nanotube (MWCNT) was prepared and used as a sensor for Cu2+ ion. The unique chemical and physical properties of CNT have paved the way to new and improved sensing devices. A central composite chemometrics design was ...
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Nanoscience and Nanotechnology Research Center, University of Kashan
2012-09-01
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doaj-dbe42fcf41f640cb98d76dcaae7ff4da2020-11-24T22:18:17ZengNanoscience and Nanotechnology Research Center, University of KashanJournal of Nanostructures2251-78712251-788X2012-09-012333334310.7508/jns.2012.03.0085404Multiwall Carbon Nanotubes Modified Carbon Paste Electrode for Determination of Copper(II) by Potentiometric and Impedimetric MethodsM. Mazloum-Ardakani0A. A. Mandegari1S. Masoum2H. Naeimi3Department of Chemistry, Faculty of Science, Yazd University, Yazd, I. R. IranDepartment of Chemistry, Payame Noor University, P.O. Box 19395-4697 Tehran, I. R. IranDepartment of Analytical Chemistry, Faculty of Chemistry, University of Kashan, Kashan, 87317, I.R. IranDepartment of Organic Chemistry, Faculty of Chemistry, University of Kashan, Kashan, I. R. IranA chemically modified carbon paste electrode with multiwall carbon nanotube (MWCNT) was prepared and used as a sensor for Cu2+ ion. The unique chemical and physical properties of CNT have paved the way to new and improved sensing devices. A central composite chemometrics design was applied for multivariate optimization of the effects of three significant parameters (Graphite powder (X1), MWCNT (X2) and Ionophre (X3)) influencing the response of the electrode. In the optimized conditions, the electrode exhibits a Nernstian slope of 30.1 mV/decade in a linear range between 1.0×10-6 to1.0×10-1 M over a wide pH range (2.0-6.5). Importantly, the effect of the MWCNT on the performance of electrode was investigated by impedance technique, that showed the MWCNT helps the transduction of the signal in carbon paste electrode and the charged transfer resistance (Rct) was reduced. The impedimetric results indicated that the linear concentrations range was 1.0×10−7 to 1.0×10−1 M and in comparison with potentiometry, the pH range increased to 2.0−7.5.http://jns.kashanu.ac.ir/article_5404_571e5a88885556a0215843768546ab6b.pdfMultiwall carbon nanotubeCarbon paste electrodeElectrochemical impedanceResponse surface methodologyCentral Composite Design |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
M. Mazloum-Ardakani A. A. Mandegari S. Masoum H. Naeimi |
spellingShingle |
M. Mazloum-Ardakani A. A. Mandegari S. Masoum H. Naeimi Multiwall Carbon Nanotubes Modified Carbon Paste Electrode for Determination of Copper(II) by Potentiometric and Impedimetric Methods Journal of Nanostructures Multiwall carbon nanotube Carbon paste electrode Electrochemical impedance Response surface methodology Central Composite Design |
author_facet |
M. Mazloum-Ardakani A. A. Mandegari S. Masoum H. Naeimi |
author_sort |
M. Mazloum-Ardakani |
title |
Multiwall Carbon Nanotubes Modified Carbon Paste Electrode for Determination of Copper(II) by Potentiometric and Impedimetric Methods |
title_short |
Multiwall Carbon Nanotubes Modified Carbon Paste Electrode for Determination of Copper(II) by Potentiometric and Impedimetric Methods |
title_full |
Multiwall Carbon Nanotubes Modified Carbon Paste Electrode for Determination of Copper(II) by Potentiometric and Impedimetric Methods |
title_fullStr |
Multiwall Carbon Nanotubes Modified Carbon Paste Electrode for Determination of Copper(II) by Potentiometric and Impedimetric Methods |
title_full_unstemmed |
Multiwall Carbon Nanotubes Modified Carbon Paste Electrode for Determination of Copper(II) by Potentiometric and Impedimetric Methods |
title_sort |
multiwall carbon nanotubes modified carbon paste electrode for determination of copper(ii) by potentiometric and impedimetric methods |
publisher |
Nanoscience and Nanotechnology Research Center, University of Kashan |
series |
Journal of Nanostructures |
issn |
2251-7871 2251-788X |
publishDate |
2012-09-01 |
description |
A chemically modified carbon paste electrode with multiwall carbon nanotube (MWCNT) was prepared and used as a sensor for Cu2+ ion. The unique chemical and physical properties of CNT have paved the way to new and improved sensing devices. A central composite chemometrics design was applied for multivariate optimization of the effects of three significant parameters (Graphite powder (X1), MWCNT (X2) and Ionophre (X3)) influencing the response of the electrode. In the optimized conditions, the electrode exhibits a Nernstian slope of 30.1 mV/decade in a linear range between 1.0×10-6 to1.0×10-1 M over a wide pH range (2.0-6.5). Importantly, the effect of the MWCNT on the performance of electrode was investigated by impedance technique, that showed the MWCNT helps the transduction of the signal in carbon paste electrode and the charged transfer resistance (Rct) was reduced. The impedimetric results indicated that the linear concentrations range was 1.0×10−7 to 1.0×10−1 M and in comparison with potentiometry, the pH range increased to 2.0−7.5. |
topic |
Multiwall carbon nanotube Carbon paste electrode Electrochemical impedance Response surface methodology Central Composite Design |
url |
http://jns.kashanu.ac.ir/article_5404_571e5a88885556a0215843768546ab6b.pdf |
work_keys_str_mv |
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