Surfactant modified carbon nanotube paste electrode for the sensitive determination of mitoxantrone anticancer drug

Surfactant modified carbon nanotube paste electrode is prepared as electrochemical sensor with high sensitivity in responding to Mitoxantrone (MTX). Electrochemical oxidation of MTX is investigated in buffered solution by cyclic voltammetry that is found very sensitive method for detection of MTX. I...

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Main Author: Jamballi G. Manjunatha
Format: Article
Language:English
Published: International Association of Physical Chemists (IAPC) 2017-03-01
Series:Journal of Electrochemical Science and Engineering
Subjects:
Online Access:http://pub.iapchem.org/ojs/index.php/JESE/article/view/368
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author Jamballi G. Manjunatha
author_facet Jamballi G. Manjunatha
author_sort Jamballi G. Manjunatha
collection DOAJ
description Surfactant modified carbon nanotube paste electrode is prepared as electrochemical sensor with high sensitivity in responding to Mitoxantrone (MTX). Electrochemical oxidation of MTX is investigated in buffered solution by cyclic voltammetry that is found very sensitive method for detection of MTX. It is shown that the sodium dodecyl sulfate modified carbon nanotube paste electrode (SDSMCNTPE) gives enhanced current response for MTX compared to the bare carbon nanotube paste electrode (BCNTPE). Different parameters were tested to optimize the conditions for MTX determination. The effects of different surfactant and surfactant concentration, pH, scan rate, detection limit (LOD), limit of quantification (LOQ) and concentration of MTX on the oxidation peak current values were determined. Excellent results were obtained by cyclic voltammetry using SDSMCNTPE, where two MTX oxidation peaks appeared at 367 and 596 mV vs. SCE. Detailed analysis of the second voltammetric peak showed the linear dynamic range between 2×10−7 and 7×10−6 M MTX with the slope of co-relation coefficient of 0.99271. LOD and LOQ were determined as 3.5 ×10−8 M and 11×10−8 M, respectively. The SDSMCNTPE showed very good reproducibility, high stability in its voltammetric response, high electrochemical sensitivity and low detection limit for MTX.
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spelling doaj.art-f3943fcb5f6a46eb931846ed083c05782022-12-22T01:08:14ZengInternational Association of Physical Chemists (IAPC)Journal of Electrochemical Science and Engineering1847-92862017-03-017110.5599/jese.368247Surfactant modified carbon nanotube paste electrode for the sensitive determination of mitoxantrone anticancer drugJamballi G. Manjunatha0Department of Chemistry, FMKMC College, Madikeri, Mangalore University Constituent College, KarnatakaSurfactant modified carbon nanotube paste electrode is prepared as electrochemical sensor with high sensitivity in responding to Mitoxantrone (MTX). Electrochemical oxidation of MTX is investigated in buffered solution by cyclic voltammetry that is found very sensitive method for detection of MTX. It is shown that the sodium dodecyl sulfate modified carbon nanotube paste electrode (SDSMCNTPE) gives enhanced current response for MTX compared to the bare carbon nanotube paste electrode (BCNTPE). Different parameters were tested to optimize the conditions for MTX determination. The effects of different surfactant and surfactant concentration, pH, scan rate, detection limit (LOD), limit of quantification (LOQ) and concentration of MTX on the oxidation peak current values were determined. Excellent results were obtained by cyclic voltammetry using SDSMCNTPE, where two MTX oxidation peaks appeared at 367 and 596 mV vs. SCE. Detailed analysis of the second voltammetric peak showed the linear dynamic range between 2×10−7 and 7×10−6 M MTX with the slope of co-relation coefficient of 0.99271. LOD and LOQ were determined as 3.5 ×10−8 M and 11×10−8 M, respectively. The SDSMCNTPE showed very good reproducibility, high stability in its voltammetric response, high electrochemical sensitivity and low detection limit for MTX.http://pub.iapchem.org/ojs/index.php/JESE/article/view/368Electrochemical sensorsMTX determinationcarbon nanotubessurfactant modified electrodes
spellingShingle Jamballi G. Manjunatha
Surfactant modified carbon nanotube paste electrode for the sensitive determination of mitoxantrone anticancer drug
Journal of Electrochemical Science and Engineering
Electrochemical sensors
MTX determination
carbon nanotubes
surfactant modified electrodes
title Surfactant modified carbon nanotube paste electrode for the sensitive determination of mitoxantrone anticancer drug
title_full Surfactant modified carbon nanotube paste electrode for the sensitive determination of mitoxantrone anticancer drug
title_fullStr Surfactant modified carbon nanotube paste electrode for the sensitive determination of mitoxantrone anticancer drug
title_full_unstemmed Surfactant modified carbon nanotube paste electrode for the sensitive determination of mitoxantrone anticancer drug
title_short Surfactant modified carbon nanotube paste electrode for the sensitive determination of mitoxantrone anticancer drug
title_sort surfactant modified carbon nanotube paste electrode for the sensitive determination of mitoxantrone anticancer drug
topic Electrochemical sensors
MTX determination
carbon nanotubes
surfactant modified electrodes
url http://pub.iapchem.org/ojs/index.php/JESE/article/view/368
work_keys_str_mv AT jamballigmanjunatha surfactantmodifiedcarbonnanotubepasteelectrodeforthesensitivedeterminationofmitoxantroneanticancerdrug