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Alkali metal-mediated interfacial charge redistribution toward near-optimal water oxidation
- Kim, Ungsoo;
- Lee, Sangjin;
- Oh, Nam Khen;
- Seo, Jihyung;
- Cha, Ji Hoo;
- ... Han, Young-Kyu;
- 외 5명
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The optimal oxidation state and electronic structure of active sites in an electrocatalyst are critical factors for maximizing water-oxidation kinetics. To this end, we developed a heterostructured electrocatalyst for oxygen evolution reaction (OER) comprising La0.5Sr0.5CoO3-delta and Li2MoO4 (LSC/LMO) with optimized oxidation states for active metal sites using an alkali metal mediator. The LSC/LMO system exhibited excellent OER performance (overpotential: 1.45 V at 10 mA cm(-2)) and operational durability (chronoamperometric and cyclic voltammetry stabilities of 200 h at 1.52 V and 5000 cycles). The experimental and computational analyses revealed that lithium atoms accumulated at the LSC/LMO interface exhibit a mediating function toward optimizing the oxidation state and electronic structure of OER active metal elements (cobalt and molybdenum), minimizing the free energy barrier of the rate-determining step in OER. This study provides a new insight for boosting sluggish OER kinetics in water oxidation through in situ oxidation state modulation for heterostructured electrocatalysts.
키워드
- 제목
- Alkali metal-mediated interfacial charge redistribution toward near-optimal water oxidation
- 저자
- Kim, Ungsoo; Lee, Sangjin; Oh, Nam Khen; Seo, Jihyung; Cha, Ji Hoo; Lee, Junghyun; Lee, Seong-hun; Shin, Tae Joo; Baik, Jeong Min; Han, Young-Kyu; Park, Hyesung
- 발행일
- 2022-10
- 유형
- Article
- 권
- 10
- 호
- 40
- 페이지
- 21512 ~ 21522