Development of an ultra-sensitive method using nafion and multi-walled carbon nanotube coated glassy carbon electrode for atenolol determination

Atenolol (Scheme 1) is antihypertensive drug that form β-blocker group, which widely used in the treatment of hypertension In this study, the redox properties of the Tensinor drug used in blood pressure treatment were examined on modified glassy carbon electrode and the electrodes prepared by coatin...

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Main Author: Hilal Çelik Kazıcı
Format: Article
Language:English
Published: Pamukkale University 2018-12-01
Series:Pamukkale University Journal of Engineering Sciences
Subjects:
Online Access:https://dergipark.org.tr/tr/pub/pajes/issue/41410/504303
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spelling doaj-782b604476ae4adeaf3f6b3b9ff779a62021-04-04T13:24:44ZengPamukkale UniversityPamukkale University Journal of Engineering Sciences1300-70092147-58812018-12-0124712871292218Development of an ultra-sensitive method using nafion and multi-walled carbon nanotube coated glassy carbon electrode for atenolol determinationHilal Çelik KazıcıAtenolol (Scheme 1) is antihypertensive drug that form β-blocker group, which widely used in the treatment of hypertension In this study, the redox properties of the Tensinor drug used in blood pressure treatment were examined on modified glassy carbon electrode and the electrodes prepared by coating carbon nanotubes on this modified electrode. In order to investigate the effects of nafion coated multi-walled glass nanotube (MWCNT / NGCE) electrode response and nafion coated glassy carbon electrode (NGCE) and electrode responses of only glassy carbon electrode (GCE) surfaces on the support electrolyte, pH and scan rate, the cyclic voltammetry (CV) and differential pulse voltammetry (DPV) methods were used. Atenolol (ATN) was observed in the Britton-Robinson (BR) buffer solution (pH 7.0) thereabouts 1.11 V (vsAg / AgCl (3.0 mol L-1 KCl). Voltammetric method reacted linear at a concentration range between 3x10-5 μM and 9x10-2 μM under optimum analytical experimental conditions. The results of Tensinor's limit of detection on the Britton-Robinson (BR) (pH=7) buffer were found to be 7.67 x 10-5 mM and 2.5 x 10-4 mM, respectively. Additionally, in the study, interference effects experiments were performed with auxiliary substances used in the preparation of medicines and no negative effect was observed.https://dergipark.org.tr/tr/pub/pajes/issue/41410/504303cyclic voltammetryatenololcarbon nano tubeçevrimsel voltametriatenololkarbon nano tüp
collection DOAJ
language English
format Article
sources DOAJ
author Hilal Çelik Kazıcı
spellingShingle Hilal Çelik Kazıcı
Development of an ultra-sensitive method using nafion and multi-walled carbon nanotube coated glassy carbon electrode for atenolol determination
Pamukkale University Journal of Engineering Sciences
cyclic voltammetry
atenolol
carbon nano tube
çevrimsel voltametri
atenolol
karbon nano tüp
author_facet Hilal Çelik Kazıcı
author_sort Hilal Çelik Kazıcı
title Development of an ultra-sensitive method using nafion and multi-walled carbon nanotube coated glassy carbon electrode for atenolol determination
title_short Development of an ultra-sensitive method using nafion and multi-walled carbon nanotube coated glassy carbon electrode for atenolol determination
title_full Development of an ultra-sensitive method using nafion and multi-walled carbon nanotube coated glassy carbon electrode for atenolol determination
title_fullStr Development of an ultra-sensitive method using nafion and multi-walled carbon nanotube coated glassy carbon electrode for atenolol determination
title_full_unstemmed Development of an ultra-sensitive method using nafion and multi-walled carbon nanotube coated glassy carbon electrode for atenolol determination
title_sort development of an ultra-sensitive method using nafion and multi-walled carbon nanotube coated glassy carbon electrode for atenolol determination
publisher Pamukkale University
series Pamukkale University Journal of Engineering Sciences
issn 1300-7009
2147-5881
publishDate 2018-12-01
description Atenolol (Scheme 1) is antihypertensive drug that form β-blocker group, which widely used in the treatment of hypertension In this study, the redox properties of the Tensinor drug used in blood pressure treatment were examined on modified glassy carbon electrode and the electrodes prepared by coating carbon nanotubes on this modified electrode. In order to investigate the effects of nafion coated multi-walled glass nanotube (MWCNT / NGCE) electrode response and nafion coated glassy carbon electrode (NGCE) and electrode responses of only glassy carbon electrode (GCE) surfaces on the support electrolyte, pH and scan rate, the cyclic voltammetry (CV) and differential pulse voltammetry (DPV) methods were used. Atenolol (ATN) was observed in the Britton-Robinson (BR) buffer solution (pH 7.0) thereabouts 1.11 V (vsAg / AgCl (3.0 mol L-1 KCl). Voltammetric method reacted linear at a concentration range between 3x10-5 μM and 9x10-2 μM under optimum analytical experimental conditions. The results of Tensinor's limit of detection on the Britton-Robinson (BR) (pH=7) buffer were found to be 7.67 x 10-5 mM and 2.5 x 10-4 mM, respectively. Additionally, in the study, interference effects experiments were performed with auxiliary substances used in the preparation of medicines and no negative effect was observed.
topic cyclic voltammetry
atenolol
carbon nano tube
çevrimsel voltametri
atenolol
karbon nano tüp
url https://dergipark.org.tr/tr/pub/pajes/issue/41410/504303
work_keys_str_mv AT hilalcelikkazıcı developmentofanultrasensitivemethodusingnafionandmultiwalledcarbonnanotubecoatedglassycarbonelectrodeforatenololdetermination
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