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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
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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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Journal ArticleDOI

Chirality dependence of the thermal conductivity of carbon nanotubes

TL;DR: In this article, the thermal conductivities of three types of single-wall carbon nanotubes were studied using the homogeneous non-equilibrium Green-Kubo method based on the Brenner potential.
Journal ArticleDOI

Eley–Rideal reactions between H atoms on metal and graphite surfaces: The variation of reactivity with substrate

TL;DR: In this article, the reaction of gas-phase H atoms with H atoms adsorbed onto a variety of substrates was shown to exhibit a wide range of reactivity, and the single-collision Eley-Rideal reaction cross sections are generally small, suggesting that hot-atom processes play an important role in H2 formation on metal surfaces.
Journal ArticleDOI

The bending of single layer graphene sheets: the lattice versus continuum approach

TL;DR: In this paper, the out-of-plane bending behavior of single layer graphene sheets (SLGSs) is investigated using a special equivalent atomistic-continuum model, where the C-C bonds are represented by deep shear bending and axial stretching beams and the graphene properties by a homogenization approach.
Journal ArticleDOI

A reactive empirical bond order (REBO) potential for hydrocarbon oxygen interactions

TL;DR: In this paper, the second generation reactive empirical bond order (REBO) potential for hydrocarbons, as parametrized by Brenner and co-workers, was extended to include oxygen.