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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.

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Citations
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Journal ArticleDOI

An atomistic-based finite deformation membrane for single layer crystalline films

TL;DR: In this article, an extension of the Born rule based on the exponential map is proposed to account for the fact that the lattice vectors of the crystal lie along the chords of the curved membrane, and consequently a tangent map like the standard Born rule is inadequate.
Journal ArticleDOI

Equilibrium configuration and continuum elastic properties of finite sized graphene

TL;DR: In this paper, a continuum mechanics approach to model the elastic deformation of finite graphene sheets based on Brenner's potential is presented. But the authors do not consider the nonlinearity of the deformation.
Journal ArticleDOI

Effect of chemical functionalization on the mechanical properties of carbon nanotubes

TL;DR: In this article, the effects of chemical attachments on the mechanical properties of single-walled carbon nanotubes are examined with classical molecular dynamics simulations and the maximum compressive (buckling) force for various functionalized and non-functionalized CNTs is calculated.
Journal ArticleDOI

Thermal conductivity of diamond and related materials from molecular dynamics simulations

TL;DR: In this article, the role of quantum corrections to the classical thermal conduction was examined, and it was shown that these effects are small for fairly harmonic systems such as diamond, and that vacancies dramatically decrease the thermal conductivity, and can be described by a reciprocal relation with a scaling as n va, with a50.6960.
Journal ArticleDOI

Development and Validation of ReaxFF Reactive Force Field for Hydrocarbon Chemistry Catalyzed by Nickel

TL;DR: In this article, the ReaxFF reactive force field was developed to describe adsorption, decomposition, reformation and desorption of hydrocarbons as they interact with the nickel surface.