Self-standing foam-like Pd-based alloys nanostructures for efficient electrocatalytic ethanol oxidation

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY(2023)

Cited 5|Views6
No score
Abstract
In this work, self-standing binary porous PdM (M = Ni, Fe and Co) foam-like nanostructures are rationally designed by a rapid and one-step aqueous-solution method, including ice co -reduction of metal precursors using sodium borohydride. Amongst the tested PdM nano -structures, the PdNi nanostructures delivered a superior alkaline ethanol oxidation reac-tion (EOR) activity and stability than those of PdFe, PdCo, and commercial Pd/C catalysts. The EOR mass activity of PdNi (4.81 A/mgPd) was 1.32, 1.51, and 24.05-folds of PdFe (3.62 A/ mgPd), PdCo (3.19 A/mgPd) and Pd/C (0.2 A/mgPd), respectively based on equal Pd mass loading. This was attributed to the lower synergetic effect of PdNi, which enhanced acti-vation/dissociation of H2O to afford OH-species required for fast EOR kinetics; meanwhile, porous foam-like nanostructure improved electron mobility and increased accessible active sites. This study reveals that low synergism in porous PdM nanocrystals is beneficial for augmenting the EOR activity, which may allow the design of other binary Pd-based alloys for various electrocatalytic reactions.& COPY; 2023 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
More
Translated text
Key words
Porous binary Pd alloy,Porous PdNi alloy,Alkaline ethanol oxidation,Porous PdFe alloy,Porous PdCo alloy
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Chat Paper
Summary is being generated by the instructions you defined