Molecular dynamics simulation of the crystallization of a liquid gold nanoparticle

Authors
Shim, JHLee, SCLee, BJSuh, JYCho, YW
Issue Date
2003-04
Publisher
ELSEVIER
Citation
JOURNAL OF CRYSTAL GROWTH, v.250, no.3-4, pp.558 - 564
Abstract
Molecular dynamics simulation of the crystallization behavior of a liquid gold (Au) nanoparticle, about 4 nm in diameter,,on cooling has been carried out based on the modified embedded-atom-method potential. With decreasing cooling rate, the final - structure. of the particle changes from amorphous to crystalline via icosahedron-like, structure. While the outer shell of the icosahedron-like particle shows crystalline feature with {111}-like facets, the inner core remains amorphous. It is found that the structure of the fully crystallized particle is polycrystalline face-centered cubic (fcc). The fcc structure of the gold nanoparticle is proved energetically the most stable form. (C) 2003 Elsevier Science B.V. All rights reserved.
Keywords
EMBEDDED-ATOM POTENTIALS; SILICON; METALS; NANOSTRUCTURE; IMPURITIES; CLUSTERS; AU; EMBEDDED-ATOM POTENTIALS; SILICON; METALS; NANOSTRUCTURE; IMPURITIES; CLUSTERS; AU; computer simulation; surface structure; metals; nanomaterials
ISSN
0022-0248
URI
https://pubs.kist.re.kr/handle/201004/138715
DOI
10.1016/S0022-0248(02)02490-9
Appears in Collections:
KIST Article > 2003
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