Synergistic function of Bi and B in interstitial ternary Pd-Bi-B alloy nanocrystals for highly active and durable electrochemical ethanol oxidation
- Authors
- Kalluru, Poliraju; Bin Azizar, Ghufran Aulia; Pramadewandaru, Respati K.; Kim, Tae Gyun; Yu, Jieun; Kang, Dong Il; Jung, Jaehoon; Lee, Young Wook; Hong, 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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