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Coalescence phenomena in 1D silver nanostructures

Authors :
Ioan I. Negulescu
G Mondragón-Galicia
Maria Teresa Gutierrez-Wing
Kelly A. Rusch
M C Henk
M Pérez-Alvarez
Jesús Arenas-Alatorre
C Gutiérrez-Wing
Source :
Journal of Physics: Condensed Matter. 21:295301
Publication Year :
2009
Publisher :
IOP Publishing, 2009.

Abstract

Different coalescence processes on 1D silver nanostructures synthesized by a PVP assisted reaction in ethylene glycol at 160 °C were studied experimentally and theoretically. Analysis by TEM and HRTEM shows different defects found on the body of these materials, suggesting that they were induced by previous coalescence processes in the synthesis stage. TEM observations showed that irradiation with the electron beam eliminates the boundaries formed near the edges of the structures, suggesting that this process can be carried out by the application of other means of energy (i.e. thermal). These results were also confirmed by theoretical calculations by Monte Carlo simulations using a Sutton-Chen potential. A theoretical study by molecular dynamics simulation of the different coalescence processes on 1D silver nanostructures is presented, showing a surface energy driven sequence followed to form the final coalesced structure. Calculations were made at 1000-1300 K, which is near the melting temperature of silver (1234 K). Based on these results, it is proposed that 1D nanostructures can grow through a secondary mechanism based on coalescence, without losing their dimensionality.

Details

ISSN :
1361648X and 09538984
Volume :
21
Database :
OpenAIRE
Journal :
Journal of Physics: Condensed Matter
Accession number :
edsair.doi.dedup.....01630c42e3b5b2794ac9afa7665559be