Development of Ternary and Quaternary Catalysts for the Electrooxidation of Glycerol
This work consisted in the preparation of platinum-based catalysts supported on carbon (Vulcan XC-72) and investigation of their physicochemical and electrochemical properties. Catalysts of the C/Pt-Ni-Sn-Me (Me = Ru or Ir) type were prepared by the Pechini method at temperature of 350∘C. Four diffe...
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2012-01-01
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Series: | The Scientific World Journal |
Online Access: | http://dx.doi.org/10.1100/2012/502083 |
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author | L. M. Artem D. M. Santos A. R. De Andrade K. B. Kokoh J. Ribeiro |
author_facet | L. M. Artem D. M. Santos A. R. De Andrade K. B. Kokoh J. Ribeiro |
author_sort | L. M. Artem |
collection | DOAJ |
description | This work consisted in the preparation of platinum-based catalysts supported on carbon (Vulcan XC-72) and investigation of their physicochemical and electrochemical properties. Catalysts of the C/Pt-Ni-Sn-Me (Me = Ru or Ir) type were prepared by the Pechini method at temperature of 350∘C. Four different compositions were homemade: C/Pt60Sn10Ni30, C/Pt60Sn10Ni20Ru10, C/Pt60Sn10Ni10Ru20, and C/Pt60Sn10Ni10Ir20. These catalysts were electrochemically and physically characterized by cyclic voltammetry (CV), chronoamperometry (CA) in the presence of glycerol 1.0 mol dm-3, X-ray diffraction (XRD), and high-resolution transmission electron microscopy (HRTEM). XRD results showed the main peaks of face-centered cubic Pt. The particle sizes obtained from XRD and HRTEM experiments were close to values ranging from 3 to 8.5 nm. The CV results indicate behavior typical of Pt-based catalysts in acid medium. The CV and CA data reveal that quaternary catalysts present the highest current density for the electrooxidation of glycerol. |
format | Article |
id | doaj-art-6afdebe32d69461c84f76c20c2c08de6 |
institution | Kabale University |
issn | 1537-744X |
language | English |
publishDate | 2012-01-01 |
publisher | Wiley |
record_format | Article |
series | The Scientific World Journal |
spelling | doaj-art-6afdebe32d69461c84f76c20c2c08de62025-02-03T06:07:20ZengWileyThe Scientific World Journal1537-744X2012-01-01201210.1100/2012/502083502083Development of Ternary and Quaternary Catalysts for the Electrooxidation of GlycerolL. M. Artem0D. M. Santos1A. R. De Andrade2K. B. Kokoh3J. Ribeiro4Department of Chemistry, Federal University of Espírito Santo, 29075-910 Vitória, ES, BrazilDepartment of Chemistry, Federal University of Espírito Santo, 29075-910 Vitória, ES, BrazilDepartment of Chemistry, São Paulo University, 14040-901 Ribeirão Preto, SP, BrazilEquipe Electrocatalyse, LACCO, UMR 6503 Université de Poitiers, 4 rue Michel Brunet, B27-BP 633, 86022 Poitiers Cedex, FranceDepartment of Chemistry, Federal University of Espírito Santo, 29075-910 Vitória, ES, BrazilThis work consisted in the preparation of platinum-based catalysts supported on carbon (Vulcan XC-72) and investigation of their physicochemical and electrochemical properties. Catalysts of the C/Pt-Ni-Sn-Me (Me = Ru or Ir) type were prepared by the Pechini method at temperature of 350∘C. Four different compositions were homemade: C/Pt60Sn10Ni30, C/Pt60Sn10Ni20Ru10, C/Pt60Sn10Ni10Ru20, and C/Pt60Sn10Ni10Ir20. These catalysts were electrochemically and physically characterized by cyclic voltammetry (CV), chronoamperometry (CA) in the presence of glycerol 1.0 mol dm-3, X-ray diffraction (XRD), and high-resolution transmission electron microscopy (HRTEM). XRD results showed the main peaks of face-centered cubic Pt. The particle sizes obtained from XRD and HRTEM experiments were close to values ranging from 3 to 8.5 nm. The CV results indicate behavior typical of Pt-based catalysts in acid medium. The CV and CA data reveal that quaternary catalysts present the highest current density for the electrooxidation of glycerol.http://dx.doi.org/10.1100/2012/502083 |
spellingShingle | L. M. Artem D. M. Santos A. R. De Andrade K. B. Kokoh J. Ribeiro Development of Ternary and Quaternary Catalysts for the Electrooxidation of Glycerol The Scientific World Journal |
title | Development of Ternary and Quaternary Catalysts for the Electrooxidation of Glycerol |
title_full | Development of Ternary and Quaternary Catalysts for the Electrooxidation of Glycerol |
title_fullStr | Development of Ternary and Quaternary Catalysts for the Electrooxidation of Glycerol |
title_full_unstemmed | Development of Ternary and Quaternary Catalysts for the Electrooxidation of Glycerol |
title_short | Development of Ternary and Quaternary Catalysts for the Electrooxidation of Glycerol |
title_sort | development of ternary and quaternary catalysts for the electrooxidation of glycerol |
url | http://dx.doi.org/10.1100/2012/502083 |
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