首页|Construction of framework confined ordered mesoporous Pt/TixAlOy catalysts and applied for the catalytic oxidation of propane

Construction of framework confined ordered mesoporous Pt/TixAlOy catalysts and applied for the catalytic oxidation of propane

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The framework confined Pt/TixAlOy catalysts were prepared by a one-step evaporation-induced self-assembly(EISA)technique,and their activities for the catalytic oxidation of propane were investigated.The Pt/TixAlOy catalysts exhibited high specific surface area due to the ordered mesoporous structure.With the increase of TiO2 contents,the specific surface area and acidic sites of Pt/TixAlOy catalysts increased.The specific surface area and acidic sites could improve the exposure of the active sites and electron transfer of Pt and TiO2,which was beneficial to catalytic oxidation of propane.However,too high acidic sites of catalysts could lead to coke deposition and clogging of the pores,and the addition of TiO2 had the optimal value.The Pt/Ti_(0.1)AlOy catalyst exhibited superior catalytic activity,which could be attributed to the higher specific surface area,higher the percentage of Pt~(2+)and lattice oxygen,abundant acid sites,and higher redox properties.In addition,the Pt/Ti_(0.1)AlOy catalyst also exhibited superior sulfur resistance due to the multiple acidic sites of catalysts.

Evaporation-induced self-assemblyPt/TixAlOy catalystsOrdered mesoporousFramework confinementPropane

Liqiong Liu、Fang Dong、Weiliang Han

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State Key Laboratory for Oxo Synthesis and Selective Oxidation,And National Engineering Research Center for Fine Petrochemical Intermediates,Lanzhou Institute of Chemical Physics,Chinese Academy of Sciences,Lanzhou,730000,China

2022

Microporous and mesoporous materials

Microporous and mesoporous materials

EISCI
ISSN:1387-1811
年,卷(期):2022.341