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Novel decorated aluminium(iii) phthalocyanine complex with the application of MWCNTs on electrodes: electrochemical non-enzymatic oxidation and reduction of glucose and hydrogen peroxide

In this study, we performed the physicochemical and electrochemical characterization of a decorated macrocyclic aluminium(iii) phthalocyanine complex (AlTMQNCAPc). Subsequently, the AlTMQNCAPc@MWCNT/GC electrode was used for the electrochemical detection of glucose and hydrogen peroxide (H(2)O(2)) b...

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Autores principales: Mounesh, Manikanta, P., Reddy, K. R. Venugopala, Selvaraj, Manickam, Vidyasagar, C. C., Nagaraja, Bhari Mallanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10334413/
https://www.ncbi.nlm.nih.gov/pubmed/37441052
http://dx.doi.org/10.1039/d3ra02617e
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author Mounesh
Manikanta, P.
Reddy, K. R. Venugopala
Selvaraj, Manickam
Vidyasagar, C. C.
Nagaraja, Bhari Mallanna
author_facet Mounesh
Manikanta, P.
Reddy, K. R. Venugopala
Selvaraj, Manickam
Vidyasagar, C. C.
Nagaraja, Bhari Mallanna
author_sort Mounesh
collection PubMed
description In this study, we performed the physicochemical and electrochemical characterization of a decorated macrocyclic aluminium(iii) phthalocyanine complex (AlTMQNCAPc). Subsequently, the AlTMQNCAPc@MWCNT/GC electrode was used for the electrochemical detection of glucose and hydrogen peroxide (H(2)O(2)) by cyclic voltammetry (CV), differential pulse voltammetry (DPV), and chronoamperometry (CA). Moreover, the limit of detection, linear range, and sensitivity for glucose and H(2)O(2) were investigated (CV: 2.5 nM L(−1) and 25 nM L(−1), 50–500 μM, 0.052 and 0.072 μA μmol cm(−2); DPV: 3.1 nM L(−1) and 18 nM L(−1), 50–500 μM, 0.062 and 0.066 μA μmol cm(−2) and CA: 10 nM L(−1) and 20 nM L(−1), 50–500 μM, 0.098 and 0.07 μA μmol cm(−2), respectively). In addition, the AlTMQNCAPc@MWCNT/GC electrode showed good selectivity for the detection of glucose and H(2)O(2) in the presence of common interfering substances, such as AA, DA, UA, glycine, l-cysteine, nitrite, Pb(ii), Cd(ii), Cu(ii), Co(ii), Hg(ii), Zn(ii), and glucose. For the detection of glucose and H(2)O(2), the kinetic parameters, including the electron transfer coefficient and catalytic reaction rate constant, were also established. Finally, for usage in practical applications, the modified electrode was employed to achieve the quantitative detection of glucose and H(2)O(2) in human urine and commercial samples of 3% H(2)O(2), respectively.
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spelling pubmed-103344132023-07-12 Novel decorated aluminium(iii) phthalocyanine complex with the application of MWCNTs on electrodes: electrochemical non-enzymatic oxidation and reduction of glucose and hydrogen peroxide Mounesh Manikanta, P. Reddy, K. R. Venugopala Selvaraj, Manickam Vidyasagar, C. C. Nagaraja, Bhari Mallanna RSC Adv Chemistry In this study, we performed the physicochemical and electrochemical characterization of a decorated macrocyclic aluminium(iii) phthalocyanine complex (AlTMQNCAPc). Subsequently, the AlTMQNCAPc@MWCNT/GC electrode was used for the electrochemical detection of glucose and hydrogen peroxide (H(2)O(2)) by cyclic voltammetry (CV), differential pulse voltammetry (DPV), and chronoamperometry (CA). Moreover, the limit of detection, linear range, and sensitivity for glucose and H(2)O(2) were investigated (CV: 2.5 nM L(−1) and 25 nM L(−1), 50–500 μM, 0.052 and 0.072 μA μmol cm(−2); DPV: 3.1 nM L(−1) and 18 nM L(−1), 50–500 μM, 0.062 and 0.066 μA μmol cm(−2) and CA: 10 nM L(−1) and 20 nM L(−1), 50–500 μM, 0.098 and 0.07 μA μmol cm(−2), respectively). In addition, the AlTMQNCAPc@MWCNT/GC electrode showed good selectivity for the detection of glucose and H(2)O(2) in the presence of common interfering substances, such as AA, DA, UA, glycine, l-cysteine, nitrite, Pb(ii), Cd(ii), Cu(ii), Co(ii), Hg(ii), Zn(ii), and glucose. For the detection of glucose and H(2)O(2), the kinetic parameters, including the electron transfer coefficient and catalytic reaction rate constant, were also established. Finally, for usage in practical applications, the modified electrode was employed to achieve the quantitative detection of glucose and H(2)O(2) in human urine and commercial samples of 3% H(2)O(2), respectively. The Royal Society of Chemistry 2023-07-11 /pmc/articles/PMC10334413/ /pubmed/37441052 http://dx.doi.org/10.1039/d3ra02617e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Mounesh
Manikanta, P.
Reddy, K. R. Venugopala
Selvaraj, Manickam
Vidyasagar, C. C.
Nagaraja, Bhari Mallanna
Novel decorated aluminium(iii) phthalocyanine complex with the application of MWCNTs on electrodes: electrochemical non-enzymatic oxidation and reduction of glucose and hydrogen peroxide
title Novel decorated aluminium(iii) phthalocyanine complex with the application of MWCNTs on electrodes: electrochemical non-enzymatic oxidation and reduction of glucose and hydrogen peroxide
title_full Novel decorated aluminium(iii) phthalocyanine complex with the application of MWCNTs on electrodes: electrochemical non-enzymatic oxidation and reduction of glucose and hydrogen peroxide
title_fullStr Novel decorated aluminium(iii) phthalocyanine complex with the application of MWCNTs on electrodes: electrochemical non-enzymatic oxidation and reduction of glucose and hydrogen peroxide
title_full_unstemmed Novel decorated aluminium(iii) phthalocyanine complex with the application of MWCNTs on electrodes: electrochemical non-enzymatic oxidation and reduction of glucose and hydrogen peroxide
title_short Novel decorated aluminium(iii) phthalocyanine complex with the application of MWCNTs on electrodes: electrochemical non-enzymatic oxidation and reduction of glucose and hydrogen peroxide
title_sort novel decorated aluminium(iii) phthalocyanine complex with the application of mwcnts on electrodes: electrochemical non-enzymatic oxidation and reduction of glucose and hydrogen peroxide
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10334413/
https://www.ncbi.nlm.nih.gov/pubmed/37441052
http://dx.doi.org/10.1039/d3ra02617e
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