Published November 2010 | Version v1
Report

Atomic and electronic structure transformations of silver nanoparticles under a rapid cooling conditions

  • 1. Instituto Peruano de Energia Nuclear, Lima (Peru). Division de Materiales
  • 2. Universidad Nacional Mayor de San Marcos, Lima (Peru). Facultad de Ciencias Fisicas

Description

The structural evolution and dynamics of silver nanodrops Ag2869 (4.4 nm in diameter) under rapid cooling conditions have been studied by means of molecular dynamics simulations and electronic density of state calculations. The interaction of silver atoms is modelled by a tight-binding semiempirical interatomic potential proposed by Cleri and Rosato. The pair correlation functions and the pair analysis technique are used to reveal the structural transition in the process of solidification. It is shown that Ag nanoparticles evolve into different nanostructures under different cooling processes. At a cooling rate of 1.5625 x 1013 K s-1 the nanoparticles preserve an amorphous-like structure containing a large amount of 1551 and 1541 pairs which correspond to icosahedral symmetry. For a lower cooling rate (1.5625 x 1012 K s-1), the nanoparticles transform into a crystal-like structure consisting mainly of 1421 and 1422 pairs which correspond to the face centred cubic and hexagonal close packed structures, respectively. The variations of the electronic density of states for the differently cooled nanoparticles are small, but in correspondence with the structural changes. (orig.)

Part of:
Scientific and Technological Report 2009

Additional details

Additional titles

Original title (English)
Informe Cientifico Tecnologico 2009

Publishing Information

Imprint Title
Scientific and Technological Report 2009
Imprint Pagination
262 p.
Journal Page Range
p. 97-103
ISSN
1684-1662
Report number
INIS-PE--048

Optional Information

Notes
22 refs., 7 figs. Imprint:Informe Cientifico Tecnologico 2009