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Synergistic function of Bi and B in interstitial ternary Pd-Bi-B alloy nanocrystals for highly active and durable electrochemical ethanol oxidation

Authors
Kalluru, PolirajuBin Azizar, Ghufran AuliaPramadewandaru, Respati K.Kim, Tae GyunYu, JieunKang, Dong IlJung, JaehoonLee, Young WookHong, Jong Wook
Issue Date
Apr-2025
Publisher
Royal Society of Chemistry
Citation
Journal of Materials Chemistry A, v.13, no.14, pp 10019 - 10027
Pages
9
Indexed
SCIE
SCOPUS
Journal Title
Journal of Materials Chemistry A
Volume
13
Number
14
Start Page
10019
End Page
10027
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/78118
DOI
10.1039/d5ta00245a
ISSN
2050-7488
2050-7496
Abstract
Engineering interstitial alloys by integrating non-metallic atoms into bimetallic frameworks is a promising strategy for optimizing performance in various potential applications. Herein, we introduce a novel synthesis of Pd4Bi-B ternary alloy nanocrystals for highly efficient ethanol oxidation catalysts. The Bi enhances the electrochemical oxidation of ethanol through C1-pathways by facilitating C-C bond breaking and reducing poisoning intermediates. Concurrently, the interstitial B mitigates the d-band center upshift observed in Pd4Bi alloys, leading to a lower d-band center in Pd4Bi-B nanocrystals than in Pd nanocrystals. This further increases the ethanol oxidation rate by facilitating the desorption of intermediates. The synergistic function of Bi and B in the Pd4Bi-B nanocrystals results in superior EOR activity and durability compared to both Pd4Bi and Pd/C. Our findings provide valuable insights into the design of metal-nonmetallic alloy catalysts and emphasize the critical role of compositional control in enhancing catalytic efficacy.
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