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Preferential heteroatom substitution into ZnIn2S4 nanosheets boosts photocatalytic hydrogen production
- Bhavani, Palagiri;
- Kamalakannan, Shanmugasundaram;
- Kumar, D. Praveen;
- Ham, Hyung Chul;
- Park, Young-Kwon;
- 외 1명
WEB OF SCIENCE
44SCOPUS
47초록
Interior modification through preferential substitution of heteroatoms in 2D materials can rescue surface reactive sites for enhanced charge kinetics and photo-activity. Here, Ru and Ni heteroatoms were successfully incorporated in ZnIn2S4 (ZIS) nanosheets via a simple hydrothermal technique. Ru-ZIS photocatalysts exhibited improved photo-water splitting activity (26,400 mu mol. h(-1)g(-1)) and good stability than that of Ni-ZIS and pristine ZIS under simulated sunlight, which may be related to the increase in reactive sites with Ru substitution, optimized adsorption-free energy of the reaction intermediates and charge kinetics. Ru substitution influenced Zn site availability and thus coordinated bonding with surrounding S ions. Ru-ZIS showed excellent hydrogen evolution performance and minimal change in Gibbs free energy (Delta GH, similar to 0 eV). By analyzing the density of states, both Ru and S sites had greater H* intermediate absorption abilities. This study elaborates on the effect of preferential heteroatom substitution on photocatalytic performance and has widespread applications.
키워드
- 제목
- Preferential heteroatom substitution into ZnIn2S4 nanosheets boosts photocatalytic hydrogen production
- 저자
- Bhavani, Palagiri; Kamalakannan, Shanmugasundaram; Kumar, D. Praveen; Ham, Hyung Chul; Park, Young-Kwon; Kim, Wooyul
- 발행일
- 2024-11
- 유형
- Article
- 권
- 356