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Synergistic effect of bimetallic Pd–Pt nanocrystals for highly efficient methanol oxidation electrocatalysts

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Abstract
Metal nanocrystals (NCs) with controlled compositional and distributional structures have gained increasing attention due to their unique properties and broad applications, particularly in fuel cell systems. However, despite the significant importance of composition in metal NCs and their electrocatalytic behavior, comprehensive investigations into the relationship between atomic distribution and electrocatalytic activity remain scarce. In this study, we present the development of four types of nanocubes with similar sizes and controlled compositions (Pd–Pt alloy, Pd@Pt core–shell, Pd, and Pt) to investigate their influence on electrocatalytic performance for methanol oxidation reaction (MOR). The electrocatalytic activity and stability of these nanocubes exhibited variations based on their compositional structures, potentially affecting the interaction between the surface-active sites of the nanocrystals and reactive molecules. As a result, leveraging the synergistic effect of their alloy nanostructure, the Pd–Pt alloy nanocubes exhibited exceptional performance in MOR, surpassing the catalytic activity of other nanocubes, including Pd@Pt core–shell nanocubes, monometallic Pd and Pt nanocubes, as well as commercial Pd/C and Pt/C catalysts.
Author(s)
Respati K. PramadewandaruYoung Wook LeeJong Wook Hong
Issued Date
2023
Type
Article
Keyword
수소생산전기화학촉매Pd-Pt나노촉매
DOI
10.1039/D3RA04837C
URI
https://oak.ulsan.ac.kr/handle/2021.oak/17132
Publisher
RSC Advances
Language
영어
ISSN
2046-2069
Citation Volume
13
Citation Number
39
Citation Start Page
27046
Citation End Page
27053
Appears in Collections:
Natural Science > Chemistry
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