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Cost-effective and durable Ru-sputtered Pt/C-based membrane-electrode assembly for passive direct methanol fuel cells

Authors
Jeong, W.Chang, I.Ryu, S.Zheng, C.Cha, S.W.Park, T.
Issue Date
Sep-2019
Publisher
American Institute of Physics Inc.
Citation
AIP Advances, v.9, no.9, pp.095016
Journal Title
AIP Advances
Volume
9
Number
9
Start Page
095016
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/35163
DOI
10.1063/1.5120305
ISSN
2158-3226
Abstract
The present study demonstrates and evaluates the catalytic durability of ruthenium (Ru)-sputtered Pt/C-based membrane-electrode assembly (MEA) for passive direct methanol fuel cells (DMFCs). Sputtering of Ru onto the Pt/C catalyst layer on the electrolyte membrane reduces the use of Ru by more than 80% compared with conventional Pt-Ru/C (50:50 wt.%)-based MEAs. The Ru-sputtered MEA exhibited a high catalytic durability even when a high concentration of methanol (4 M) was used as fuel. In addition to the marked improvement in the catalytic durability, an increased performance was observed with passive DMFCs using Ru-sputtered MEAs. The results of the present study suggest that the new MEA fabrication method based on Ru-sputtered Pt/C considerably enhanced both the performance and durability of the cell while reducing the cost involved in fabrication. Furthermore, this study suggests ways to expand conventional MEAs for hydrogen fuel cells to the level of DMFCs. © 2019 Author(s).
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