Effect of glassy carbon properties on the electrochemical deposition of platinum nano-catalyst and its activity for methanol oxidation
The effects of the properties of glassy carbon on the deposition of platinum particles and the electrocatalytic activity of platinum supported on glassy carbon (GC/Pt) for methanol oxidation in alkaline and acidic solutions were studied. Platinum was potentiostatically deposited on two glassy carbon...
| 出版年: | Journal of the Serbian Chemical Society |
|---|---|
| 主要な著者: | , , , , |
| フォーマット: | 論文 |
| 言語: | 英語 |
| 出版事項: |
Serbian Chemical Society
2007-02-01
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| 主題: | |
| オンライン・アクセス: | http://www.shd.org.yu/JSCS/Vol72/No2/JSCS_V72_No02-10.pdf |
| _version_ | 1852755939084468224 |
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| author | SANJA TERZIC DUSAN TRIPKOVIC VLADISLAVA M. JOVANOVIC AMALIJA TRIPKOVIC ANDRZEJ KOWAL |
| author_facet | SANJA TERZIC DUSAN TRIPKOVIC VLADISLAVA M. JOVANOVIC AMALIJA TRIPKOVIC ANDRZEJ KOWAL |
| author_sort | SANJA TERZIC |
| collection | DOAJ |
| container_title | Journal of the Serbian Chemical Society |
| description | The effects of the properties of glassy carbon on the deposition of platinum particles and the electrocatalytic activity of platinum supported on glassy carbon (GC/Pt) for methanol oxidation in alkaline and acidic solutions were studied. Platinum was potentiostatically deposited on two glassy carbon samples, thermally treated at different temperatures, which were either polished or anodicaly polarised in acid (GCOX-AC/Pt) and in alkali (GCOX-AL/Pt). Anodic polarisation of glassy carbon, either in alkaline or acidic solution, enhances the activity of both types of GC/Pt electrodes for methanol oxidation. The activity of the catalysts follows the change in the properties of the glassy carbon support upon anodic treatment. The specific activity of the GCOX-AL/Pt electrode for this reaction in alkali is increased only a few times in comparison with the activity of the GC/Pt one. On the other hand, the specific activity of the GCOX-AC/Pt electrode for methanol oxidation in acid is about one order of magnitude higher than that of the GC/Pt electrode. The role of the substrate on the properties of catalyst is discussed in detail. |
| format | Article |
| id | doaj-art-e01f2a49db204e1ab1853b735b4e3a69 |
| institution | Directory of Open Access Journals |
| issn | 0352-5139 |
| language | English |
| publishDate | 2007-02-01 |
| publisher | Serbian Chemical Society |
| record_format | Article |
| spelling | doaj-art-e01f2a49db204e1ab1853b735b4e3a692025-08-19T20:58:05ZengSerbian Chemical SocietyJournal of the Serbian Chemical Society0352-51392007-02-01722165181Effect of glassy carbon properties on the electrochemical deposition of platinum nano-catalyst and its activity for methanol oxidationSANJA TERZICDUSAN TRIPKOVICVLADISLAVA M. JOVANOVICAMALIJA TRIPKOVICANDRZEJ KOWALThe effects of the properties of glassy carbon on the deposition of platinum particles and the electrocatalytic activity of platinum supported on glassy carbon (GC/Pt) for methanol oxidation in alkaline and acidic solutions were studied. Platinum was potentiostatically deposited on two glassy carbon samples, thermally treated at different temperatures, which were either polished or anodicaly polarised in acid (GCOX-AC/Pt) and in alkali (GCOX-AL/Pt). Anodic polarisation of glassy carbon, either in alkaline or acidic solution, enhances the activity of both types of GC/Pt electrodes for methanol oxidation. The activity of the catalysts follows the change in the properties of the glassy carbon support upon anodic treatment. The specific activity of the GCOX-AL/Pt electrode for this reaction in alkali is increased only a few times in comparison with the activity of the GC/Pt one. On the other hand, the specific activity of the GCOX-AC/Pt electrode for methanol oxidation in acid is about one order of magnitude higher than that of the GC/Pt electrode. The role of the substrate on the properties of catalyst is discussed in detail.http://www.shd.org.yu/JSCS/Vol72/No2/JSCS_V72_No02-10.pdfglassy carbon supportplatinum catalystelectrochemical propertiesmethanol electrooxidationscanning tunneling microscopy (STM) |
| spellingShingle | SANJA TERZIC DUSAN TRIPKOVIC VLADISLAVA M. JOVANOVIC AMALIJA TRIPKOVIC ANDRZEJ KOWAL Effect of glassy carbon properties on the electrochemical deposition of platinum nano-catalyst and its activity for methanol oxidation glassy carbon support platinum catalyst electrochemical properties methanol electrooxidation scanning tunneling microscopy (STM) |
| title | Effect of glassy carbon properties on the electrochemical deposition of platinum nano-catalyst and its activity for methanol oxidation |
| title_full | Effect of glassy carbon properties on the electrochemical deposition of platinum nano-catalyst and its activity for methanol oxidation |
| title_fullStr | Effect of glassy carbon properties on the electrochemical deposition of platinum nano-catalyst and its activity for methanol oxidation |
| title_full_unstemmed | Effect of glassy carbon properties on the electrochemical deposition of platinum nano-catalyst and its activity for methanol oxidation |
| title_short | Effect of glassy carbon properties on the electrochemical deposition of platinum nano-catalyst and its activity for methanol oxidation |
| title_sort | effect of glassy carbon properties on the electrochemical deposition of platinum nano catalyst and its activity for methanol oxidation |
| topic | glassy carbon support platinum catalyst electrochemical properties methanol electrooxidation scanning tunneling microscopy (STM) |
| url | http://www.shd.org.yu/JSCS/Vol72/No2/JSCS_V72_No02-10.pdf |
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