To improve performance of membrane electrode assembly (MEA) at large current density region
efficient mass transfer at the cathode is desired
for which a feasible strategy is to lower catalyst layer thickness by constructing high loading Pt-alloy catalysts on carbon. But the high loading may induce unwanted particle aggregation. In this work
H-PtNi/C with 33% (mass) Pt loading on carbon and monodisperse distribution of 3.55?nm PtNi nanoparticles
was prepared by a bimodal-pore route. In electrocatalytic oxygen reduction reaction (ORR)
H-PtNi/C displays an activity inferior to the low Pt loading catalyst L-PtNi/C (13.3% (mass)) in the half-cell. While in H
2
-O
2
MEA
H-PtNi/C delivers the peak power density of 1.51?W·cm
?2
and the mass transfer limiting current density of 4.4?A·cm
?2
being 21% and 16% higher than those of L-PtNi/C (1.25?W·cm
?2
3.8?A·cm
?2
) respectively
which can be ascribed to enhanced mass transfer brought by the thinner catalyst layer in the former. In addition
the same method can be used to prepare PtFe alloy catalyst with a high-Pt loading of 36% (mass). This work may lead to a range of catalyst materials for the large current density applications
such as fuel cell vehicles.
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Efficiently boosting oxygen reduction activity of MnO2 with tailored surface oxygen vacancies by ball milling
Direct atomic-level insight into oxygen reduction reaction on size-dependent Pt-based electrocatalysts from density functional theory calculations
PtCo-based nanocatalyst for oxygen reduction reaction: Recent highlights on synthesis strategy and catalytic mechanism
Simultaneous utilization of electro-generated O2 and H2 for H2O2 production: An upgrade of the Pd-catalytic electro-Fenton process for pollutants degradation
Cathode catalyst prepared from bacterial cellulose for ethanol fermentation stillage treatment in microbial fuel cell
Related Author
Lin Yu
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Yuyang Zheng
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Related Institution
School of Chemical Engineering and Light Industry, Guangdong University of Technology
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Key Laboratory of Rare Earths, Ganjiang Innovation Academy, Chinese Academy of Sciences