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Department of Energy Science and Engineering
Light, Salts and Water Research Group
1. Journal Articles
Hollow PtCo alloy nanostructures for efficient oxygen reduction electrocatalysis in polymer electrolyte membrane fuel cells
Maulana, Muhammad Irfansyah
;
Lee, Ha-Young
;
Gyan-Barimah, Caleb
;
Sung, Jong Hun
;
Yu, Jong-Sung
Department of Energy Science and Engineering
Light, Salts and Water Research Group
1. Journal Articles
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Title
Hollow PtCo alloy nanostructures for efficient oxygen reduction electrocatalysis in polymer electrolyte membrane fuel cells
Issued Date
2024-10
Citation
Maulana, Muhammad Irfansyah. (2024-10). Hollow PtCo alloy nanostructures for efficient oxygen reduction electrocatalysis in polymer electrolyte membrane fuel cells. Journal of Materials Chemistry A, 12(41), 27979–27986. doi: 10.1039/d4ta04470c
Type
Article
Keywords
NANOWIRES
;
EVOLUTION
;
CATALYSTS
;
SKIN
;
SURFACE
;
NANOPARTICLES
ISSN
2050-7488
Abstract
Achieving an efficient oxygen reduction reaction (ORR) is of prime importance for fuel cell commercialization. Herein, a hollow nanostructure of PtCo alloy with an average particle size of only ∼5 nm was prepared through a simplistic ambient oxygen-involved surface engineering strategy. The electrochemical evaluation of the catalyst confirmed an initial mass activity (MA) of 0.56 and 0.48 A mgPt−1 at 0.9 V based on the rotating disk electrode and membrane electrode assembly test, respectively, thus successfully breaking the previous perceptions of a very huge gap between the half- and full-cell MA. After 30 000 cycles of the accelerated stress test, the catalyst demonstrated durable cathodic reaction in fuel cells, satisfying the stability standards of the US Department of Energy. We discovered that efficient ORR electrocatalysis originates from optimized surface strain and favorable coordination environments of the designed catalyst. © 2024 The Royal Society of Chemistry.
URI
http://hdl.handle.net/20.500.11750/57440
DOI
10.1039/d4ta04470c
Publisher
Royal Society of Chemistry
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