INFIQC   05475
INSTITUTO DE INVESTIGACIONES EN FISICO- QUIMICA DE CORDOBA
Unidad Ejecutora - UE
artículos
Título:
Nanoalloying in real time. A high resolution STEM and computer simulation study
Autor/es:
M. M. MARISCAL; A. MAYORAL; JIMENA A. OLMOS ASAR; C. MAGEN; S. MEJÍA ROSALES; E. PÉREZ TIJERINA; M. J. YACAMAN
Revista:
Nanoscale
Editorial:
ROYAL SOC CHEMISTRY
Referencias:
Año: 2011 vol. 3 p. 5013 - 5019
ISSN:
2040-3372
Resumen:
Bimetallic nanoparticles constitute a promising type of catalysts, mainly because their physical and chemical properties may be tuned by varying their chemical composition, atomic ordering, and size. Today, the design of novel nanocatalysts is possible through a combination of virtual lab simulations on massive parallel computing and modern electron microscopy with picometre resolution on one hand, and the capability of chemical analysis at the atomic scale on the other. In this work we show how the combination of theoretical calculations and characterization can solve some of the paradoxes reported about nanocatalysts: Au?Pd bimetallic nanoparticles. In particular, we demonstrate the key role played by adsorbates, such as carbon monoxide (CO), on the structure of nanoalloys. Our results imply that surface condition of nanoparticles during synthesis is a parameter of paramount importance.