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Dual-sided single-atom bridges with interfaces for high-efficiency acidic water electrolysis: interfacial engineering beyond sacrificial corrosion resistance
- Yadav, Sunny;
- Chen, Kai;
- Cao, Yong-Hua;
- Dao, Vandung;
- Uthirakumar, Periyayya;
- ... Lee, In-Hwan
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2SCOPUS
2초록
Water electrolysis is a promising route to sustainable hydrogen, but catalysts often corrode and operate slowly in high-salinity environments. We develop a dual-sided single-atom bridge (DS-SAB) electrocatalyst by isolating Fe single atoms on a Janus N-doped carbon matrix (DS-FeSACs-C@NC). The Fe-Nx/C side optimizes oxygen evolution reaction (OER) by modulating OH- adsorption, while the Fe-C side accelerates hydrogen evolution reaction (HER) by facilitating H* intermediate desorption. The Janus interlayer with vertically aligned graphene edges and N groups act as an anion-repelling barrier without sacrificing ionic conductivity. As a result, DS-SAB delivers record-low overpotentials of 76 mV (HER) and 253 mV (OER) at 10 mA cm- 2 in 0.1 M H2SO4, and sustains 10 mA cm- 2 for over 200 h. These achievements are attributed to the bidirectional electron transfer between Fe-Nx/C and Fe-C sites, which tunes adsorption barriers, while an interfacial electric field accelerates electron flow, lowers impedance, and boosts catalytic kinetics. This work offers a paradigm for designing corrosion-resistant catalysts in complex electrolytes through atomic-scale interface control.
키워드
- 제목
- Dual-sided single-atom bridges with interfaces for high-efficiency acidic water electrolysis: interfacial engineering beyond sacrificial corrosion resistance
- 저자
- Yadav, Sunny; Chen, Kai; Cao, Yong-Hua; Dao, Vandung; Uthirakumar, Periyayya; Lee, In-Hwan
- 발행일
- 2026-02
- 유형
- Article
- 권
- 703