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Electrodeposited Pd Sub-Monolayers on Carbon-Supported Au Particles of Few Nanometers in Size: Electrocatalytic Activity for Hydrogen Oxidation and CO Tolerance Vs. Pd Coverage Full article

Общее Language: Английский, Genre: Full article,
Status: Published, Source type: Original
Journal Electrocatalysis
ISSN: 1868-2529 , E-ISSN: 1868-5994
Output data Year: 2012, Volume: 3, Number: 2, Pages: 119-131 Pages count : 13 DOI: 10.1007/s12678-012-0084-3
Tags Carbon support, CO tolerance, Gold nanoparticles, Hydrogen electrooxidation, Palladium sub-monolayers
Authors Simonov Alexander N. 1 , Pyrjaev Pavel A. 1,2 , Moroz Boris L. 1,2 , Bukhtiyarov Valery I. 1,2 , Parmon Valentin N. 1,2
Affiliations
1 Boreskov Institute of Catalysis, Pr. Lavrentieva 5, 630090 Novosibirsk, Russia
2 Novosibirsk State University, Pirogova st. 2, 630090 Novosibirsk, Russia

Funding (5)

1 Council for Grants of the President of the Russian Federation НШ-524.2012.3
2 Council for Grants of the President of the Russian Federation МК-380.2011.3
3 Фонд содействия развитию малых форм предприятий в научно-технической сфере 7389r/10166
4 Russian Foundation for Basic Research 09-03-12272
5 European Commission 32175 FP6-2004-NMP-TI-4 FCANODE

Abstract: A series of Pd–Au/C catalysts were obtained by selective electrodeposition of various amounts of Pd metal from a H2PdCl4 solution onto the carbon-supported Au nanoparticles (mainly below 5 nm in diameter) synthesized by “cationic adsorption” technique. The catalytic performance of the Pd–Au particles with both the clean and carbon monoxide (CO)-blocked surfaces for the hydrogen oxidation reaction (HOR) at 25 and 60 °C was tested as a function of the Pd coverage (θ Pd) expressed in effective monolayer (ML) units, using a rotating disk electrode (RDE). The RDE studies demonstrate superior HOR activity (per unit of Pd surface area) of Pd deposited at the submonolayer level (θ Pd < 0.65 ML) onto the finely dispersed Au particles in comparison to those observed for the low-dispersed Pd–Au/C catalysts described earlier by other authors and for the monometallic Pd particles. The dependencies of the HOR activity and CO tolerance of the finely dispersed Pd–Au particles on their surface composition are discussed in terms of occurrence of various Pd sites on the surface of bimetallic particles differing in their ability to catalyze HOR and adsorb CO. The relative contribution of various factors to the rise of CO tolerance observed for Pd deposited on Au at varying θ Pd was estimated by comparison of the HOR activities measured with the fresh and CO-poisoned Pd–Au/C catalysts.
Cite: Simonov A.N. , Pyrjaev P.A. , Moroz B.L. , Bukhtiyarov V.I. , Parmon V.N.
Electrodeposited Pd Sub-Monolayers on Carbon-Supported Au Particles of Few Nanometers in Size: Electrocatalytic Activity for Hydrogen Oxidation and CO Tolerance Vs. Pd Coverage
Electrocatalysis. 2012. V.3. N2. P.119-131. DOI: 10.1007/s12678-012-0084-3 publication_identifier_short.wos_identifier_type publication_identifier_short.scopus_identifier_type publication_identifier_short.rinz_identifier_type
Dates:
Published online: Feb 25, 2012
Published print: Jun 1, 2012
Identifiers:
publication_identifier.wos_identifier_type WOS:000305231200005
publication_identifier.scopus_identifier_type 2-s2.0-84864492880
publication_identifier.rinz_identifier_type 20484187
publication_identifier.accession_number_identifier_type 2012:826118
publication_identifier.chemical_accession_number_identifier_type 158:580706
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