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关于合成气在Rh/Cu单原子合金催化剂上合成高级醇的机理见解。

Mechanistic insights into higher alcohol synthesis from syngas on Rh/Cu single-atom alloy catalysts.

作者信息

Gao Yihao, Shi Lei, Li Shenggang, Ren Qinghua

机构信息

Department of Chemistry, College of Sciences, Shanghai University, 99 Shangda Road, Shanghai 200444, China.

出版信息

Phys Chem Chem Phys. 2020 Mar 7;22(9):5070-5077. doi: 10.1039/c9cp06379j. Epub 2020 Feb 19.

Abstract

Low cost Cu-based catalysts are attractive options in catalyzing higher alcohol synthesis (HAS) from syngas. Introducing isolated Rh single atoms into the surfaces of these Cu catalysts has the potential to dramatically improve the performance of these Cu-based catalysts. In this work, extensive density functional theory (DFT) calculations were performed with periodic slab models to systematically investigate the possibility of using Rh/Cu single-atom alloys (SAAs) as HAS catalysts. The mechanism of ethanol synthesis from syngas on the representative Rh/Cu(111) and Rh/Cu(100) surfaces was elucidated. All possible formation pathways of the C and C fragments leading to the ethanol main product, as well as the methane and methanol by-products were considered. Our calculations show that for ethanol formation, the C-C bond coupling is easier over the Rh/Cu SAA catalysts than pure Cu catalysts, suggesting that Rh/Cu SAA catalysts are more favorable for the formation of higher alcohols.

摘要

低成本的铜基催化剂是催化合成气制高级醇(HAS)的有吸引力的选择。将孤立的铑单原子引入这些铜催化剂的表面有可能显著提高这些铜基催化剂的性能。在这项工作中,使用周期性平板模型进行了广泛的密度泛函理论(DFT)计算,以系统地研究使用Rh/Cu单原子合金(SAA)作为HAS催化剂的可能性。阐明了合成气在代表性的Rh/Cu(111)和Rh/Cu(100)表面上合成乙醇的机理。考虑了导致乙醇主要产物以及甲烷和甲醇副产物的碳和碳片段的所有可能形成途径。我们的计算表明,对于乙醇的形成,Rh/Cu SAA催化剂上的C-C键偶联比纯铜催化剂更容易,这表明Rh/Cu SAA催化剂更有利于高级醇的形成。

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