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Fabrication of practical PEMFC electrode with ultralow mass loading of platinum via electro-spray deposition techniqueopen access

Authors
Yoo, J. H.Choi, B. H.Koh, B. S.Jung, C. Y.Wang, X.Yi, S. C.
Issue Date
Mar-2017
Publisher
KOREAN ASSOC CRYSTAL GROWTH, INC
Keywords
Electrostatic spray deposition; Catalyst layer; Membrane electrode assembly; Proton exchange membrane Fuel cell
Citation
JOURNAL OF CERAMIC PROCESSING RESEARCH, v.18, no.3, pp.203 - 206
Indexed
SCIE
SCOPUS
KCI
Journal Title
JOURNAL OF CERAMIC PROCESSING RESEARCH
Volume
18
Number
3
Start Page
203
End Page
206
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/152778
DOI
10.36410/jcpr.2017.18.3.203
ISSN
1229-9162
Abstract
Various electrode deposition methods, such as air-brushing, decal transfer, screen printing and electrostatic spraying, have been explored to fabricate high-performance catalyst layer for proton exchange membrane fuel cells. Among them, the electrostatic spray deposition dragged a great attention due to the improved fuel cell performance at extremely low platinum mass loading. In this paper, we systematically investigated the effect of mass loading of platinum by using the electro-spray deposition. The electrode morphology of the electro-sprayed catalyst layer is compared with that of the conventional decal-transferred catalyst layer to highlight its unique microstructure. As a result, the electro-sprayed catalyst layer showed 2 times higher current density at 0.5 V as compared to the decal-transferred catalyst layer. Thus, it can be suggested that a great deal of efforts must put onto the microstructure of the catalyst layer to overcome the severe performance decrease at low platinum loading.
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COLLEGE OF ENGINEERING (DEPARTMENT OF CHEMICAL ENGINEERING)
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