Title of article :
Homogeneous and heterogeneous melting behavior of bulk and
nanometer-sized Cu systems: a numerical study
Author/Authors :
G. Manai، نويسنده , , F. Delogu، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2007
Abstract :
Molecular dynamics simulations have been used
to investigate the solid–liquid transition of different Cu
systems. These consisted of surface-free crystalline bulks
and semi-crystals terminating with a free surface as well as of
particles and wires with different shape and size in the
mesoscale regime. The characteristic melting points of the
various systems were attained by gradual heating starting
from 300 K. Apart from surface-free bulk systems, where the
phase transition at the limit of superheating is homogeneous,
melting displays heterogeneous character. This is due to the
existence of surface layers with structural and energetic
properties different from the ones of bulk-like interior.
Simulations point out a significant depression of both the
melting point and latent heat of fusion for nanometer-sized
systems respect to semi-crystals. Below the characteristic
melting point, free surfaces are involved in pre-melting
processes determining the formation of a solid–liquid
interface. The onset of melting is related to the formation of a
critical amount of lattice defects and this provides a common
basis for the rationalization of homogeneous and heterogeneous
melting processes despite their intrinsic differences
Journal title :
Journal of Materials Science
Journal title :
Journal of Materials Science