cover image: Grégoire Breyton, Hakim Amara, Jaysen Nelayah, Jérôme Creuze, Hazar Guesmi, et al.. Atomic-Scale Surface Segregation in Copper-Gold Nanoparticles. Physical Review Letters, 2023, 130 (23), pp.236201. &...

Grégoire Breyton, Hakim Amara, Jaysen Nelayah, Jérôme Creuze, Hazar Guesmi, et al.. Atomic-Scale Surface Segregation in Copper-Gold Nanoparticles. Physical Review Letters, 2023, 130 (23), pp.236201. &...

1 Jun 2023

We combine electron microscopy measurements of the surface compositions in Cu-Au nanoparticles and atomistic simulations to investigate the effect of gold segregation. While this mechanism has been extensively investigated within Cu-Au in the bulk state, it was never studied at the atomic level in nanoparticles. By using energy dispersive x-ray analysis across the (100) and (111) facets of nanoparticles, we provide evidence of gold segregation in Cu3Au and CuAu3 nanoparticles in the 10 nm size range grown by epitaxy on a salt surface with high control of the nanoparticles morphology. To get atomic-scale insights into the segregation properties in Cu-Au nanoparticles on the whole composition range, we perform Monte Carlo calculations employing N-body interatomic potentials highlighting a complete segregation of Au in the (100) and (111) facets for gold nominal composition above 70% and 60%, respectively. Furthermore, we show that there is no size effect on the segregation behavior since we evidence the same oscillating concentration profile from the surface to the nanoparticle’s core as in the bulk. These results shed new light on the interpretation of the enhanced reactivity, selectivity, and stability of Cu-Au nanoparticles in various catalytic reactions.

Authors

Grégoire Breyton, Hakim Amara, Jaysen Nelayah, Jérôme Creuze, Hazar Guesmi, Damien Alloyeau, Guillaume Wang, Christian Ricolleau

Bibliographic Reference
Grégoire Breyton, Hakim Amara, Jaysen Nelayah, Jérôme Creuze, Hazar Guesmi, et al.. Atomic-Scale Surface Segregation in Copper-Gold Nanoparticles. Physical Review Letters, 2023, 130 (23), pp.236201. ⟨10.1103/PhysRevLett.130.236201⟩. ⟨hal-04182569⟩
DOI
https://doi.org/10.1103/PhysRevLett.130.236201
HAL Collection
['CNRS - Centre national de la recherche scientifique', 'Ecole Nationale Supérieure de Chimie de Montpellier', 'Institut Charles Gerhardt - Institut de Chimie Moléculaire et des Matériaux de Montpellier', 'Institut de Chimie du CNRS', 'Université Paris-Saclay', 'Chimie', 'Université de Montpellier', 'Université Paris Cité', 'Université de Paris - Faculté des Sciences', 'Laboratoire Matériaux et Phénomènes Quantiques', 'ANR', "Laboratoire d'Etude des Microstructures", 'Graduate School Chimie', 'Graduate School Physique', 'Graduate School Life Sciences and Health', 'Graduate School Health and Drug Sciences', 'Institut des Sciences de la Lumière', 'Université de Montpellier (2015-2021)', 'Université de Montpellier - EPE', "Institut de chimie moléculaire et des matériaux d'Orsay"]
HAL Identifier
4200306
Institution
['Université Paris Cité', 'ONERA', 'Université Paris-Saclay', 'Institut de Chimie - CNRS Chimie', 'Ecole Nationale Supérieure de Chimie de Montpellier']
Laboratory
['Laboratoire Matériaux et Phénomènes Quantiques', "Université Paris-Saclay, ONERA, CNRS, Laboratoire d'étude des microstructures (LEM)", "Laboratoire d'étude des microstructures [Châtillon]", "Institut de Chimie Moléculaire et des Matériaux d'Orsay", 'Institut Charles Gerhardt Montpellier - Institut de Chimie Moléculaire et des Matériaux de Montpellier']
Published in
France

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