Methanol oxidation on carbon-supported Pt-Ru and TiO2 (Pt-Ru/TiO2/C) electrocatalyst prepared using polygonal barrel-sputtering method

Kazuki Hirakawa, Mitsuhiro Inoue*, Takayuki Abe

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

37 Scopus citations

Abstract

Methanol oxidation performance of a carbon-supported Pt-Ru alloy catalyst used at the direct methanol fuel cell (DMFC) anode is improved by adding TiO2. However, the methanol oxidation performance of the electrocatalyst described above must be enhanced further to realize practical application in DMFCs. In this study, we used our original surface-modifying technique termed the "polygonal barrel-sputtering method" to prepare a carbon-supported Pt-Ru and TiO2 (Pt-Ru/TiO2/C) electrocatalyst offering higher methanol oxidation performance. The obtained results show that the methanol oxidation performance of the prepared Pt-Ru/TiO2/C is superior to that using wet process as the TiO 2 deposition method. Furthermore, for our sputtering method, the peak current of methanol oxidation on the Pt-Ru/TiO2/C is enhanced by increasing the TiO2 deposited amount up to 2.8 wt.%. These results suggest that a Pt-Ru/TiO2 interface area is increased using the polygonal barrel-sputtering method, providing the high methanol oxidation performance of Pt-Ru/TiO2/C.

Original languageEnglish
Pages (from-to)5874-5880
Number of pages7
JournalElectrochimica Acta
Volume55
Issue number20
DOIs
StatePublished - 2010/08/01

Keywords

  • Anode catalyst
  • Direct methanol fuel cells (DMFCs)
  • Methanol oxidation
  • Polygonal barrel-sputtering method
  • Pt-Ru/TiO interface

ASJC Scopus subject areas

  • General Chemical Engineering
  • Electrochemistry

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