Enhanced methanol production from photothermal CO2 reduction via multilevel interface design
Citations

WEB OF SCIENCE

6
Citations

SCOPUS

8

초록

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

photothermal catalysisCO2 hydrogenationmethanol productionsolar fuelmultilevel interfaceHYDROGENATIONDEACTIVATIONCATALYSTS
제목
Enhanced methanol production from photothermal CO2 reduction via multilevel interface design
저자
Wang, HongminShang, BoChoi, ChungseokJeon, SunghoGao, YuanzuoWang, TylerHarmon, Nia J.Liu, MengxiaStach, Eric A.Wang, Hailiang
DOI
10.26599/NR.2025.94907160
발행일
2025-02
유형
Article
저널명
Nano Research
18
2