상세 보기
- Wang, Hongmin;
- Shang, Bo;
- Choi, Chungseok;
- Jeon, Sungho;
- Gao, Yuanzuo;
- 외 5명
WEB OF SCIENCE
6SCOPUS
8초록
Photothermal CO2 hydrogenation is a promising route to produce methanol as a sustainable liquid solar fuel. However, most existing catalysts require a combination of solar irradiation and additional heat input to achieve a satisfactory reaction rate. For the few that can be driven solely by light, their reaction rates are one order of magnitude lower. We develop a photothermal catalyst with multilevel interfaces that achieves improved methanol production from photothermal CO2 hydrogenation without external heat. The catalyst features a layered structure comprising Cu/ZnO/Al2O3 (CZA) covered by oxidized carbon black (oCB), where the oCB/CZA interface promotes efficient heat generation and transfer, and the Cu/oxide interface contributes to high catalytic activity. Under a mild pressure of 8 bar, our oCB/CZA catalyst shows a methanol selectivity of 64.7% with a superior production rate of 4.91 mmol<middle dot>gcza-1<middle dot>h-1, at least one order of magnitude higher than other photothermal catalysts solely driven by light. This work demonstrates a photothermal catalyst design strategy for liquid solar fuel production.
키워드
- 제목
- Enhanced methanol production from photothermal CO2 reduction via multilevel interface design
- 저자
- Wang, Hongmin; Shang, Bo; Choi, Chungseok; Jeon, Sungho; Gao, Yuanzuo; Wang, Tyler; Harmon, Nia J.; Liu, Mengxia; Stach, Eric A.; Wang, Hailiang
- 발행일
- 2025-02
- 유형
- Article
- 저널명
- Nano Research
- 권
- 18
- 호
- 2