Atomically Dispersed Iron on Functionalized Boron Nitride Nanosheets for Efficient Oxygen Reduction in Proton Exchange Membrane Fuel Cells
- Authors
- Muthurasu, Alagan; Balaji, Ravichandran; Ko, Tae Hoon; Kim, Tae Woo; Raj Rosyara, Yagya; Kim, Nam Dong; Radhakrishnan, Sivaprakasam; Kim, Hak Yong
- Issue Date
- 2025-10
- Publisher
- American Chemical Society
- Citation
- ACS Catalysis, v.15, pp.18987 - 18994
- Abstract
- Iron single-atom (Fe-SA) catalysts are promising alternatives to platinum for proton-exchange membrane fuel cells (PEMFCs), but their high performance often lacks long-term stability during operation. Designing a unique Fe coordination environment beyond the traditional Fe–N4 structure in Fe–N–C catalysts could overcome current stability limitations of Pt-free catalysts, though this remains unexplored. Herein, iron single-atom catalysts embedded in carbon mesopores and integrated with hydroxylated boron nitride nanosheets (OH-BN/C/Fe-SA) exhibit enhanced oxygen reduction reaction (ORR) activity. The distinctive Fe coordination in OH-BN/C/Fe-SA markedly enhances 4e– ORR activity and selectivity, reducing H2O2 production to below 1% compared to the Fe-SA catalyst. The OH-BN/C/Fe-SA catalyst shows high cyclic stability, with less than 5 mV drop in half-wave potential (E1/2) after long cycles, making it the most stable Pt-free catalyst reported for PEMFCs. The 2D coordination structure effectively prevents demetalation of the OH-BN/C/Fe-SA catalyst, ensuring long-term stability and improved PEMFC durability. Our study lays the foundation for next-generation Pt-free catalysts for PEMFCs.
- Keywords
- ELECTROCATALYST; GOLD; Fuel Cell; nanosheets; single atom; proton-exchange membrane; and catalysts
- URI
- https://pubs.kist.re.kr/handle/201004/153570
- DOI
- 10.1021/acscatal.5c06792
- Appears in Collections:
- KIST Article > 2025
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