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X-RAY ABSORPTION FINE STRUCTURE - XAFS13: 13th International Conference | 2007

EXAFS Characterization of Dendrimer-Derived Pt/γ-Al2O3

Attilio Siani; Oleg S. Alexeev; Christopher T. Williams; Harry J. Ploehn; Michael D. Amiridis

The various steps involved in the preparation of a Pt/y-Al203 material using hydroxyl-terminated generation four (G40H) PAMAM dendrimers as templates were monitored by EXAFS. The results indicate that CI ligands in the Pt precursors (H2PtCl6 and K2PtCl4) were partially replaced by aquo ligands upon hydrolysis to form (PtCl3(H20)3)+ and (PtCl2(H20)2) species. After interaction of such species with G40H, Cl ligands from the first coordination shell of Pt were further replaced by nitrogen atoms from the dendrimer interior, indicating the complexation of Pt with the dendrimer. This process was accompanied by a transfer of the electron density from the dendrimer to Pt, indicating that the former plays the role of a ligand. Following treatment of the H2PtCl6/G40H and K2PtCl4/G40H composites with NaBH4, no substantial changes were detecteded in the electronic or coordination environment of Pt, and no formation of metal nanoparticles was observed. However, when the reduction treatment was performed with H2, the formation of extremely small Pt clusters incorporating no more than 4 Pt atoms was observed. These Pt species remained strongly bonded to the dendrimer and their nuclearity depends on the length of the H2 treatment. Formation of Pt nanoparticles with an average diameter of approximately 10 A was finally observed after the deposition of H2PtCl6/G40H on y-Al203 and drying, suggesting that their formation may be related to the collapse of the dendrimer structure. The Pt nanoparticles formed appear to have high mobility, since subsequent thermal treatment in 02/H2 led to further sintering.


Langmuir | 2006

Improved CO oxidation activity in the presence and absence of hydrogen over cluster-derived PtFe/SiO2 catalysts.

Attilio Siani; Burjor Captain; Oleg S. Alexeev; Eirini Stafyla; Ana B. Hungría; Paul A. Midgley; John Meurig Thomas; Richard D. Adams; Michael D. Amiridis


Journal of Catalysis | 2009

The effect of Fe on SiO2-supported Pt catalysts: Structure, chemisorptive, and catalytic properties

Attilio Siani; Oleg S. Alexeev; Gwendoline Lafaye; Michael D. Amiridis


Journal of Physical Chemistry C | 2007

FT-IR Investigation of the Thermal Decomposition of Poly(amidoamine) Dendrimers and Dendrimer−Metal Nanocomposites Supported on Al2O3 and ZrO2

D. Samuel Deutsch; Attilio Siani; Paul T. Fanson; Hirohito Hirata; Shinichi Matsumoto; Christopher T. Williams; Michael D. Amiridis


Journal of Physical Chemistry B | 2006

EXAFS characterization of dendrimer-Pt nanocomposites used for the preparation of Pt/gamma-Al2O3 catalysts.

Oleg S. Alexeev; Attilio Siani; Gwendoline Lafaye; Christopher T. Williams; Harry J. Ploehn; Michael D. Amiridis


Journal of Catalysis | 2008

Synthesis of cluster-derived PtFe/SiO2 catalysts for the oxidation of CO

Attilio Siani; Oleg S. Alexeev; Burjor Captain; Gwendoline Lafaye; Patrice Marecot; Richard D. Adams; Michael D. Amiridis


Journal of Physical Chemistry B | 2006

Particle size control in dendrimer-derived supported ruthenium catalysts.

Gwendoline Lafaye; Attilio Siani; Patrice Marecot; Michael D. Amiridis; Christopher T. Williams


Journal of Catalysis | 2009

Dendrimer-mediated synthesis of subnanometer-sized Rh particles supported on ZrO2

Attilio Siani; Oleg S. Alexeev; D. Samuel Deutsch; John R. Monnier; Paul T. Fanson; Hirohito Hirata; Shinichi Matsumoto; Christopher T. Williams; Michael D. Amiridis


Journal of Catalysis | 2008

Synthesis and characterization of γ-Al2O3-supported Pt catalysts from Pt4 and Pt6 clusters formed in aqueous solutions

Attilio Siani; Karen R. Wigal; Oleg S. Alexeev; Michael D. Amiridis


Journal of Catalysis | 2008

Synthesis and characterization of Pt clusters in aqueous solutions

Attilio Siani; Karen R. Wigal; Oleg S. Alexeev; Michael D. Amiridis

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Michael D. Amiridis

University of South Carolina

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Oleg S. Alexeev

University of South Carolina

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Richard D. Adams

University of South Carolina

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D. Samuel Deutsch

University of South Carolina

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