The kinetics and mechanism of methanol oxidation on Pt and PtRu catalysts in alkaline and acid media

The kinetic of methanol electrochemical oxidation for a series of platinum and platinum-ruthenium catalysts was investigated. A correlation between the beginning of OHad adsorption and methanol oxidation was demonstrated on Pt single crystals and Pt nanocatalyst. The activity of the nano-structured...

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Main Author: Lović Jelena
Format: Article
Language:English
Published: Serbian Chemical Society 2007-01-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0352-5139/2007/0352-51390707709L.pdf
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spelling doaj-bbbacabb040e40b2b92be659fe1a22252020-12-24T14:32:31ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51391820-74212007-01-0172770971210.2298/JSC0707709L0352-51390707709LThe kinetics and mechanism of methanol oxidation on Pt and PtRu catalysts in alkaline and acid mediaLović Jelena0IHTM-Centar za elektrohemiju, BeogradThe kinetic of methanol electrochemical oxidation for a series of platinum and platinum-ruthenium catalysts was investigated. A correlation between the beginning of OHad adsorption and methanol oxidation was demonstrated on Pt single crystals and Pt nanocatalyst. The activity of the nano-structured Pt catalyst was compared with single crystal platinum electrodes assuming the Kinoshita model of nanoparticles. The ruthenium-containing catalysts shifted the onset of methanol oxidation to more negative potentials. The effect was more pronounced in acid than in alkaline media. Based on the established diagnostic criteria, the reaction between COad and OHad species according to the Langmuir-Hinshelwood mechanism was proposed as the rate determining step in alkaline and acid media on Pt and PtRu catalysts. .http://www.doiserbia.nb.rs/img/doi/0352-5139/2007/0352-51390707709L.pdfmethanol oxidationrole of anionstemperature effectreaction mechanism
collection DOAJ
language English
format Article
sources DOAJ
author Lović Jelena
spellingShingle Lović Jelena
The kinetics and mechanism of methanol oxidation on Pt and PtRu catalysts in alkaline and acid media
Journal of the Serbian Chemical Society
methanol oxidation
role of anions
temperature effect
reaction mechanism
author_facet Lović Jelena
author_sort Lović Jelena
title The kinetics and mechanism of methanol oxidation on Pt and PtRu catalysts in alkaline and acid media
title_short The kinetics and mechanism of methanol oxidation on Pt and PtRu catalysts in alkaline and acid media
title_full The kinetics and mechanism of methanol oxidation on Pt and PtRu catalysts in alkaline and acid media
title_fullStr The kinetics and mechanism of methanol oxidation on Pt and PtRu catalysts in alkaline and acid media
title_full_unstemmed The kinetics and mechanism of methanol oxidation on Pt and PtRu catalysts in alkaline and acid media
title_sort kinetics and mechanism of methanol oxidation on pt and ptru catalysts in alkaline and acid media
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
1820-7421
publishDate 2007-01-01
description The kinetic of methanol electrochemical oxidation for a series of platinum and platinum-ruthenium catalysts was investigated. A correlation between the beginning of OHad adsorption and methanol oxidation was demonstrated on Pt single crystals and Pt nanocatalyst. The activity of the nano-structured Pt catalyst was compared with single crystal platinum electrodes assuming the Kinoshita model of nanoparticles. The ruthenium-containing catalysts shifted the onset of methanol oxidation to more negative potentials. The effect was more pronounced in acid than in alkaline media. Based on the established diagnostic criteria, the reaction between COad and OHad species according to the Langmuir-Hinshelwood mechanism was proposed as the rate determining step in alkaline and acid media on Pt and PtRu catalysts. .
topic methanol oxidation
role of anions
temperature effect
reaction mechanism
url http://www.doiserbia.nb.rs/img/doi/0352-5139/2007/0352-51390707709L.pdf
work_keys_str_mv AT lovicjelena thekineticsandmechanismofmethanoloxidationonptandptrucatalystsinalkalineandacidmedia
AT lovicjelena kineticsandmechanismofmethanoloxidationonptandptrucatalystsinalkalineandacidmedia
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