상세 보기
Vacancy-mediated dual-step phosphorization-sulfurization of MnMoO4 for efficient acidic hydrogen evolution
- Badiger, Jyoti Ganapati;
- Lim, Chae-Eun;
- Tariq, Fawad;
- Arunachalam, Maheswari;
- Sayed, Suzan Abdelfattah;
- ... Kim, Byung-Hyun;
- 외 3명
WEB OF SCIENCE
0SCOPUS
0초록
Developing efficient and acid-stable electrocatalysts from earth-abundant materials remains a central challenge for sustainable hydrogen production. Here, we propose a vacancy-mediated dual-step anion engineering strategy, in which sequential phosphorization and sulfurization cooperatively modulate the electronic structure of MnMoO4 for acidic hydrogen evolution. Phosphorus incorporation thermodynamically promotes oxygen-vacancy formation, while subsequent sulfur occupation stabilizes defect sites and optimizes the surface coordination environment, yielding a heteroatom-enriched P,S-MnMoO4 catalyst. As a result, P,S-MnMoO4 delivers a low overpotential of 198 mV at 10 mA cm-2 in 0.5 M H2SO4 and maintains stable operation over 50 h. Spectroscopic and electrochemical analyses reveal enhanced charge-transfer kinetics and an enlarged electrochemically active surface area induced by cooperative anion incorporation. Density functional theory calculations further demonstrate that P-S co-incorporation strengthens orbital hybridization between active sites and adsorbed H*, achieving a near-optimal hydrogen adsorption free energy and lowering the thermodynamic barrier for the Volmer step. This work establishes a generalizable anion-relay design paradigm for activating metal oxides toward efficient acidic HER.
- 제목
- Vacancy-mediated dual-step phosphorization-sulfurization of MnMoO4 for efficient acidic hydrogen evolution
- 저자
- Badiger, Jyoti Ganapati; Lim, Chae-Eun; Tariq, Fawad; Arunachalam, Maheswari; Sayed, Suzan Abdelfattah; Ibrahim, Alaa M.; Ryu, Sang-Wan; Kim, Byung-Hyun; Kang, Soon Hyung
- 발행일
- 2026-07
- 유형
- Article
- 권
- 14
- 호
- 40
- 페이지
- 26673 ~ 26687