催化作用
脱氢
丙烷
钒
化学
无机化学
焦炭
氧化钒
有机化学
作者
Zhi‐Jian Zhao,Tengfang Wu,Chuanye Xiong,Guodong Sun,Rentao Mu,Liang Zeng,Jinlong Gong
标识
DOI:10.1002/anie.201800123
摘要
Abstract Supported vanadium oxides are one of the most promising alternative catalysts for propane dehydrogenation (PDH) and efforts have been made to improve its catalytic performance. However, unlike Pt‐based catalysts, the nature of the active site and surface structure of the supported vanadium catalysts under reductive reaction conditions still remain elusive. This paper describes the surface structure and the important role of surface‐bound hydroxyl groups on VO x / γ‐Al 2 O 3 catalysts under reaction conditions employing in situ DRIFTS experiments and DFT calculations. It is shown that hydroxyl groups on the VO x /Al 2 O 3 catalyst (V−OH) are produced under H 2 pre‐reduction, and the catalytic performance for PDH is closely connected to the concentration of V−OH species on the catalyst. The hydroxyl groups are found to improve the catalyst that leads to better stability by suppressing the coke deposition.
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