Authors
Zhenhua Li, Jinjia Liu, Yufei Zhao, Geoffrey IN Waterhouse, Guangbo Chen, Run Shi, Xin Zhang, Xingwu Liu, Yinmao Wei, Xiao‐Dong Wen, Li‐Zhu Wu, Chen‐Ho Tung, Tierui Zhang
Publication date
2018/8
Journal
Advanced Materials
Volume
30
Issue
31
Pages
1800527
Description
Solar‐driven Fischer–Tropsch synthesis represents an alternative and potentially low‐cost route for the direct production of light olefins from syngas (CO and H2). Herein, a series of novel Co‐based photothermal catalysts with different chemical compositions are successfully fabricated by H2 reduction of ZnCoAl‐layered double‐hydroxide nanosheets at 300–700 °C. Under UV–vis irradiation, the photothermal catalyst prepared at 450 °C demonstrates remarkable CO hydrogenation performance, affording an olefin (C2–4=) selectivity of 36.0% and an olefin/paraffin ratio of 6.1 at a CO conversion of 15.4%. Characterization studies using X‐ray absorption fine structure and high‐resolution transmission electron microscopy reveal that the active catalyst comprises Co and Co3O4 nanoparticles on a ZnO–Al2O3 mixed metal oxide support. Density functional theory calculations further demonstrate that the oxide …
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