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An electrochemical sensor based on poly(procaterol hydrochloride)/carboxyl multi-walled carbon nanotube for the determination of bromhexine hydrochloride

Poly(procaterol hydrochloride) (p-ProH) polymeric film was successfully deposited onto the carboxyl multi-walled carbon nanotube (CMWCNT) modified glass carbon electrode (GCE) to construct a p-ProH/CMWCNT composite modified GCE. Due to the synergistic effect of p-ProH and CMWCNT in the composite, th...

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Autores principales: Kong, Dexian, Han, Libin, Wang, Zeming, Jiang, Lili, Zhang, Qian, Wu, Qiong, Su, Jinwei, Lu, Chunhua, Chen, Guonan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9063560/
https://www.ncbi.nlm.nih.gov/pubmed/35516997
http://dx.doi.org/10.1039/c8ra08510b
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author Kong, Dexian
Han, Libin
Wang, Zeming
Jiang, Lili
Zhang, Qian
Wu, Qiong
Su, Jinwei
Lu, Chunhua
Chen, Guonan
author_facet Kong, Dexian
Han, Libin
Wang, Zeming
Jiang, Lili
Zhang, Qian
Wu, Qiong
Su, Jinwei
Lu, Chunhua
Chen, Guonan
author_sort Kong, Dexian
collection PubMed
description Poly(procaterol hydrochloride) (p-ProH) polymeric film was successfully deposited onto the carboxyl multi-walled carbon nanotube (CMWCNT) modified glass carbon electrode (GCE) to construct a p-ProH/CMWCNT composite modified GCE. Due to the synergistic effect of p-ProH and CMWCNT in the composite, the developed sensor can enormously enhance the oxidation peak current of bromhexine hydrochloride (BrH) at ca. + 0.90 V. Based on this appearance, an electrochemical method was established for the sensitive and selective determination of BrH with differential pulse voltammetry (DPV). Various conditions affecting the peak current response of BrH were studied and optimized. Under the best conditions, the oxidation peak current of BrH is linear to its concentration in two linear dynamic ranges of 0.2–1.0 μmol L(−1) (R = 0.9948) and 1.0–8.0 μmol L(−1) (R = 0.9956), with a detection limit of 0.1 μmol L(−1) (S/N = 3). Interference experiment indicated that the as-prepared electrochemical sensor showed wonderful selectivity to the recognition of BrH and was free from disturbance of many other electro-active substances such as dopamine, ascorbic and uric acid. Finally, the practicability of the BrH sensor was verified by the satisfactory results acquired from the BrH determination in pharmaceutical preparation and human serum.
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spelling pubmed-90635602022-05-04 An electrochemical sensor based on poly(procaterol hydrochloride)/carboxyl multi-walled carbon nanotube for the determination of bromhexine hydrochloride Kong, Dexian Han, Libin Wang, Zeming Jiang, Lili Zhang, Qian Wu, Qiong Su, Jinwei Lu, Chunhua Chen, Guonan RSC Adv Chemistry Poly(procaterol hydrochloride) (p-ProH) polymeric film was successfully deposited onto the carboxyl multi-walled carbon nanotube (CMWCNT) modified glass carbon electrode (GCE) to construct a p-ProH/CMWCNT composite modified GCE. Due to the synergistic effect of p-ProH and CMWCNT in the composite, the developed sensor can enormously enhance the oxidation peak current of bromhexine hydrochloride (BrH) at ca. + 0.90 V. Based on this appearance, an electrochemical method was established for the sensitive and selective determination of BrH with differential pulse voltammetry (DPV). Various conditions affecting the peak current response of BrH were studied and optimized. Under the best conditions, the oxidation peak current of BrH is linear to its concentration in two linear dynamic ranges of 0.2–1.0 μmol L(−1) (R = 0.9948) and 1.0–8.0 μmol L(−1) (R = 0.9956), with a detection limit of 0.1 μmol L(−1) (S/N = 3). Interference experiment indicated that the as-prepared electrochemical sensor showed wonderful selectivity to the recognition of BrH and was free from disturbance of many other electro-active substances such as dopamine, ascorbic and uric acid. Finally, the practicability of the BrH sensor was verified by the satisfactory results acquired from the BrH determination in pharmaceutical preparation and human serum. The Royal Society of Chemistry 2019-04-16 /pmc/articles/PMC9063560/ /pubmed/35516997 http://dx.doi.org/10.1039/c8ra08510b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Kong, Dexian
Han, Libin
Wang, Zeming
Jiang, Lili
Zhang, Qian
Wu, Qiong
Su, Jinwei
Lu, Chunhua
Chen, Guonan
An electrochemical sensor based on poly(procaterol hydrochloride)/carboxyl multi-walled carbon nanotube for the determination of bromhexine hydrochloride
title An electrochemical sensor based on poly(procaterol hydrochloride)/carboxyl multi-walled carbon nanotube for the determination of bromhexine hydrochloride
title_full An electrochemical sensor based on poly(procaterol hydrochloride)/carboxyl multi-walled carbon nanotube for the determination of bromhexine hydrochloride
title_fullStr An electrochemical sensor based on poly(procaterol hydrochloride)/carboxyl multi-walled carbon nanotube for the determination of bromhexine hydrochloride
title_full_unstemmed An electrochemical sensor based on poly(procaterol hydrochloride)/carboxyl multi-walled carbon nanotube for the determination of bromhexine hydrochloride
title_short An electrochemical sensor based on poly(procaterol hydrochloride)/carboxyl multi-walled carbon nanotube for the determination of bromhexine hydrochloride
title_sort electrochemical sensor based on poly(procaterol hydrochloride)/carboxyl multi-walled carbon nanotube for the determination of bromhexine hydrochloride
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9063560/
https://www.ncbi.nlm.nih.gov/pubmed/35516997
http://dx.doi.org/10.1039/c8ra08510b
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