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On the nature of active gold species in zeolites in CO oxidation

Paper ID Volume ID Publish Year Pages File Format Full-Text
43351 45965 2007 8 PDF Available
Title
On the nature of active gold species in zeolites in CO oxidation
Abstract

It was disclosed for Au/zeolites that not one, but several active sites can be reactive in CO oxidation on the same catalyst. Au3+ cationic species do not show the activity under studied conditions. Gold nanoparticles (1.5–5 nm) are characterized by activity at high temperature. Gold clusters display activity in low-temperature region, but only after sample pretreatment in He at 500 °C. Nanoparticle active sites are stable during reaction, in contrast with cluster active sites. The last ones lost activity probably due to complete oxidation and can be reactivated by He treatment. This investigation revealed that clusters are the most active, but not stable and are easily oxidized by oxygen, while stable nanoparticles are less active.

Graphical abstractIt was disclosed for Au/zeolites that not one, but several active sites can be reactive in CO oxidation on the same catalyst. Au3+ cationic species does not show the activity under studied conditions. Gold nanoparticles (1.5–5 nm) are characterized by activity at high temperature. Gold clusters display activity in low-temperature region, but only after sample pretreatment in He at 500 °C. Nanoparticle active sites are stable during reaction, in contrast with cluster active sites. The last ones lost the activity probably due to complete oxidation and can be reactivated by He treatment. This investigation revealed that clusters are the most active, but not stable and are easily oxidized by oxygen, while stable nanoparticles are less active.Figure optionsDownload full-size imageDownload as PowerPoint slide

Keywords
Gold; Zeolite; Active sites; CO oxidation
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On the nature of active gold species in zeolites in CO oxidation
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Publisher
Database: Elsevier - ScienceDirect
Journal: Applied Catalysis A: General - Volume 331, 2007, Pages 121–128
Authors
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Subjects
Physical Sciences and Engineering Chemical Engineering Catalysis
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Price was $35.95
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