scispace - formally typeset
Journal ArticleDOI

Empirical potential for hydrocarbons for use in simulating the chemical vapor deposition of diamond films

Donald W. Brenner
- 15 Nov 1990 - 
- Vol. 42, Iss: 15, pp 9458-9471
TLDR
An empirical many-body potential-energy expression is developed for hydrocarbons that can model intramolecular chemical bonding in a variety of small hydrocarbon molecules as well as graphite and diamond lattices based on Tersoff's covalent-bonding formalism with additional terms that correct for an inherent overbinding of radicals.
Abstract
An empirical many-body potential-energy expression is developed for hydrocarbons that can model intramolecular chemical bonding in a variety of small hydrocarbon molecules as well as graphite and diamond lattices. The potential function is based on Tersoff's covalent-bonding formalism with additional terms that correct for an inherent overbinding of radicals and that include nonlocal effects. Atomization energies for a wide range of hydrocarbon molecules predicted by the potential compare well to experimental values. The potential correctly predicts that the \ensuremath{\pi}-bonded chain reconstruction is the most stable reconstruction on the diamond {111} surface, and that hydrogen adsorption on a bulk-terminated surface is more stable than the reconstruction. Predicted energetics for the dimer reconstructed diamond {100} surface as well as hydrogen abstraction and chemisorption of small molecules on the diamond {111} surface are also given. The potential function is short ranged and quickly evaluated so it should be very useful for large-scale molecular-dynamics simulations of reacting hydrocarbon molecules.

read more

Citations
More filters
Journal ArticleDOI

Mechanical properties, defects and electronic behavior of carbon nanotubes

TL;DR: In this paper, the authors studied the mechanical and electronic response of carbon nanotubes to external deformations, such as strain and bending, and found that the double pentagon-heptagon defect pairs are energetically preferred to uniformly stretched tubes at strains greater than 5%.
Journal ArticleDOI

Microscopic Insights into the Sputtering of Ag{111} Induced by C60 and Ga Bombardment

TL;DR: In this article, molecular dynamics computer simulations have been used to compare the differences in the mechanism of sputtering of Ag{111} by kiloelectronvolt Ga and C 6 0 projectiles.
Journal ArticleDOI

Reactive molecular dynamics simulation and chemical kinetic modeling of pyrolysis and combustion of n-dodecane

TL;DR: In this article, the authors investigated the initiation mechanisms and kinetics of pyrolysis and combustion of n-dodecane by using the reactive molecular dynamics (ReaxFF MD) simulation and chemical kinetic modeling.
Journal ArticleDOI

Molecular dynamics simulations of the nanometer-scale mechanical properties of compressed Buckminsterfullerene

TL;DR: In this article, a spherical C60 cluster (Buckminsterfullerene) compressed between graphite planes is studied and it is shown that the cluster can reversibly deform under anisotropic compression to a radius (in the direction of compression) that is 13 that of the uncompressed cluster.
Journal ArticleDOI

Mechanical characterization of graphite/epoxy nanocomposites by multi-scale analysis

TL;DR: In this paper, the elastic constants of graphite nanoplatelets, which are the inclusion phase in the micromechanical model, were calculated based on their molecular force field.