Composite Electrodes with Carbon Supported Ru Nanoparticles for H2O2 Detection

A new carbon paste electrode (CPE) incorporating Ru - nanoparticles (RuNP) stabilized on graphite powder was developed for H2O2 amperometric detection. Cyclic voltammetric measurements, performed in phosphate buffer solutions at different potential scan rates and different potential ranges were carr...

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Main Authors: Liana Maria Muresan, Graziella L. Turdean, Vllaznim Mula, Valdrin Januzaj
Format: Article
Language:English
Published: Slovenian Chemical Society 2015-01-01
Series:Acta Chimica Slovenica
Subjects:
Online Access:https://journals.matheo.si/index.php/ACSi/article/view/672
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spelling doaj-115a859271664cb9b1646b65dbd8c3682020-11-25T01:28:54ZengSlovenian Chemical SocietyActa Chimica Slovenica1318-02071580-31552015-01-01621283410.17344/acsi.2014.672208Composite Electrodes with Carbon Supported Ru Nanoparticles for H2O2 DetectionLiana Maria Muresan0Graziella L. TurdeanVllaznim MulaValdrin JanuzajDepartment of Chemical Engineering, Faculty of Chemistry and Chemical Engineering, University «Babeş-Bolyai» Cluj-Napoca, ROMANIAA new carbon paste electrode (CPE) incorporating Ru - nanoparticles (RuNP) stabilized on graphite powder was developed for H2O2 amperometric detection. Cyclic voltammetric measurements, performed in phosphate buffer solutions at different potential scan rates and different potential ranges were carried out in order to evaluate the electrochemical behavior of the CPE-RuNP modified electrodes. From amperometric measurements performed at -0.1 V vs. Ag/AgCl, KClsat, the electrocatalytic efficiency toward H2O2 reduction was evaluated and it was found in the range: 28.47 % (CPE) < 94.81 % (CPE-RuNP (2.5:1)) < 118.19 % (CPE-RuNP (2.5:3)) < 152.43 % (CPE-RuNP (2.5:2), recommending the new electrodes as promising sensors for hydrogen peroxide detection.https://journals.matheo.si/index.php/ACSi/article/view/672carbon supported Ru nanoparticlesH2O2 amperometric detectioncarbon paste modified electrodes
collection DOAJ
language English
format Article
sources DOAJ
author Liana Maria Muresan
Graziella L. Turdean
Vllaznim Mula
Valdrin Januzaj
spellingShingle Liana Maria Muresan
Graziella L. Turdean
Vllaznim Mula
Valdrin Januzaj
Composite Electrodes with Carbon Supported Ru Nanoparticles for H2O2 Detection
Acta Chimica Slovenica
carbon supported Ru nanoparticles
H2O2 amperometric detection
carbon paste modified electrodes
author_facet Liana Maria Muresan
Graziella L. Turdean
Vllaznim Mula
Valdrin Januzaj
author_sort Liana Maria Muresan
title Composite Electrodes with Carbon Supported Ru Nanoparticles for H2O2 Detection
title_short Composite Electrodes with Carbon Supported Ru Nanoparticles for H2O2 Detection
title_full Composite Electrodes with Carbon Supported Ru Nanoparticles for H2O2 Detection
title_fullStr Composite Electrodes with Carbon Supported Ru Nanoparticles for H2O2 Detection
title_full_unstemmed Composite Electrodes with Carbon Supported Ru Nanoparticles for H2O2 Detection
title_sort composite electrodes with carbon supported ru nanoparticles for h2o2 detection
publisher Slovenian Chemical Society
series Acta Chimica Slovenica
issn 1318-0207
1580-3155
publishDate 2015-01-01
description A new carbon paste electrode (CPE) incorporating Ru - nanoparticles (RuNP) stabilized on graphite powder was developed for H2O2 amperometric detection. Cyclic voltammetric measurements, performed in phosphate buffer solutions at different potential scan rates and different potential ranges were carried out in order to evaluate the electrochemical behavior of the CPE-RuNP modified electrodes. From amperometric measurements performed at -0.1 V vs. Ag/AgCl, KClsat, the electrocatalytic efficiency toward H2O2 reduction was evaluated and it was found in the range: 28.47 % (CPE) < 94.81 % (CPE-RuNP (2.5:1)) < 118.19 % (CPE-RuNP (2.5:3)) < 152.43 % (CPE-RuNP (2.5:2), recommending the new electrodes as promising sensors for hydrogen peroxide detection.
topic carbon supported Ru nanoparticles
H2O2 amperometric detection
carbon paste modified electrodes
url https://journals.matheo.si/index.php/ACSi/article/view/672
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