Title of article
Evaluation of the elastic constants of nanoparticles from atomistic simulations
Author/Authors
Grigoras، نويسنده , , S. and Gusev، نويسنده , , A.A. dos Santos، نويسنده , , S. and Suter، نويسنده , , U.W.، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2002
Pages
6
From page
489
To page
494
Abstract
We present an approach to estimate the elastic constants of molecules and nanoparticles, based on the analysis of thermal fluctuations from Monte Carlo (MC) or molecular-dynamics (MD) atomistic simulations. The method and the force-field used for these calculations have been tested by the calculation of Youngʹs modulus of a graphite sample along the basal plane; the calculated value was found to be 1.07 TPa, in very good agreement with the experimentally determined one of 1.02 TPa.
sults on a carbon-based nanotube indicate that for the longitudinal direction of the particle, the value of the elastic constant is on the order of 400 GPa. The elastic constant of the considered nanotube in the radial direction is significantly lower, the predicted values being in the range 4–7 GPa.
thod was also applied to the elastic constants of a type of siloxane-based nanostructure, whose longitudinal elastic constant (30 GPa) is an order of magnitude lower than the corresponding value for the carbon-based nanotube.
Keywords
Thermal fluctuations , Monte Carlo or molecular-dynamics atomistic simulation , elastic constants
Journal title
Polymer
Serial Year
2002
Journal title
Polymer
Record number
1716340
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