Title of article
Collision dynamics and surface wetting of nano-scale polymer particles on substrates Original Research Article
Author/Authors
Kazuhiko Fukui، نويسنده , , Bobby G. Sumpter، نويسنده , , Keith Runge، نويسنده , , Chung-Yi Kung، نويسنده , , Michael D. Barnes، نويسنده , , Donald W. Noid، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 1999
Pages
11
From page
339
To page
349
Abstract
Classical trajectory calculations are used to study collisions of nano-scale polyethylene (PE) particles on Si, C, and Al surfaces in a vacuum. The PE particles generated with up to 12 000 atoms have been propagated up to 100 ps for those surfaces to investigate the self-organization of polymer particles (mechanical memory) via collisions. It is shown that particles with the initial velocity greater than 8 Å/ps lose some chains while spreading on (coating) the surfaces during impact. In the simulation, the nano-scale PE particles with the initial velocity less than 5 Å/ps can self-organize back to their original spherical shape and do not show deformation of the shape. The results suggest that the experimentally observed deformation of a polymer particle on a substrate is due mainly to the surface interaction between the polymer particle and the substrate (surface wetting) and not to the collision.
Journal title
Chemical Physics
Serial Year
1999
Journal title
Chemical Physics
Record number
1055731
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