상세 보기
- Jeong, Seulgi;
- Kim, Ungsoo;
- Lee, Sangjin;
- Zhang, Yihan;
- Son, Eunbin;
- ... Han, Young-Kyu;
- 외 3명
WEB OF SCIENCE
94SCOPUS
93초록
Water electrolysis is emerging as a promising renewable-energy technology for the green production of hydrogen, which is a representative and reliable clean energy source. From economical and industrial perspectives, the development of earth-abundant non-noble metal-based and bifunctional catalysts, which can simultaneously exhibit high catalytic activities and stabilities for both the hydrogen evolution reaction (HER) and the oxygen evolution reaction (OER), is critical; however, to date, these types of catalysts have not been constructed, particularly, for high-current-density water electrolysis at the industrial level. This study developed a heterostructured zero-dimensional (0D)-one-dimensional (1D) PrBa0.5Sr0.5Co1.5Fe0.5O5+delta (PBSCF)-Ni3S2 as a self-supported catalytic electrode via interface and morphology engineering. This unique heterodimensional nanostructure of the PBSCF-Ni3S2 system demonstrates superaerophobic/superhydrophilic features and maximizes the exposure of the highly active heterointerface, endowing the PBSCF-Ni3S2 electrode with outstanding electrocatalytic performances in both HER and OER and exceptional operational stability during the overall water electrolysis at high current densities (500 h at 500 mA cm(-2)). This study provides important insights into the development of catalytic electrodes for efficient and stable large-scale hydrogen production systems.
키워드
- 제목
- Superaerophobic/Superhydrophilic Multidimensional Electrode System for High-Current-Density Water Electrolysis
- 저자
- Jeong, Seulgi; Kim, Ungsoo; Lee, Sangjin; Zhang, Yihan; Son, Eunbin; Choi, Kyoung-Jin; Han, Young-Kyu; Baik, Jeong Min; Park, Hyesung
- 발행일
- 2024-02
- 유형
- Article
- 저널명
- ACS Nano
- 권
- 18
- 호
- 10
- 페이지
- 7558 ~ 7569