Journal
REACTION KINETICS MECHANISMS AND CATALYSIS
Volume 127, Issue 1, Pages 69-83Publisher
SPRINGER
DOI: 10.1007/s11144-019-01545-5
Keywords
Bimetallic AuPt alloys; Preparation; Double complex salt; CO oxidation; Thermal stability
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Funding
- Russian Science Foundation [16-13-10192]
- Russian Science Foundation [19-13-13034] Funding Source: Russian Science Foundation
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In the present work, ceria-supported Au-Pt catalyst with metal ratio 3:2 was prepared using a single-source precursor concept. The double complex salt [AuEn(2)](2)[Pt(NO2)(4)](3)6H(2)O was used as such precursor. CeO2 of unique morphology with developed surface area (120m(2)/g) obtained by urea precipitation technique was used as a support. According to XRD data, size of the alloyed Au-Pt particles was estimated to be less than 3nm. It was shown that bimetallic Au-Pt system intensifies release of oxygen from the CeO2 lattice. The 0.5%Au2Pt3/CeO2 catalyst was comparatively studied in low temperature CO oxidation (simplified model reaction mixture) and under prompt thermal aging conditions (complex reaction mixture) with regard to monometallic reference samples 0.2%Au/CeO2 and 0.3%Pt/CeO2. The catalytic performance of the samples was found to be significantly dependent on the reaction and pre-treatment conditions. In the case of the bimetallic catalyst, reversible redistribution and enrichment of the nanoparticle surface with Pt or Au were shown to be the key factor defining the activity.
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