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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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Journal ArticleDOI

Fullerene nano ball bearings: an atomistic study

TL;DR: In this paper, the authors investigated fullerene and metallofullerene nano ball bearings using classical molecular dynamics and steepest descent methods based on both the Tersoff-Brenner and the Lennard-Jones 12-6 potentials.
Journal ArticleDOI

Thermal transport in polyethylene and at polyethylene-diamond interfaces investigated using molecular dynamics simulation.

TL;DR: The results suggest that the experimental interfacial conductances across hard-soft interfaces can be quite large if the bonding across the interface is strong, a conclusion that could have important implications for thermal management in bioelectromechanical systems and other inorganic-organic structures.
Journal ArticleDOI

Coiled carbon nanotube structures with supraunitary nonhexagonal to hexagonal ring ratio

TL;DR: In this article, a large variety of toroidal, coiled, screwlike, and double-helix structures can be generated by rolling up stripes made of heptagons, hexagons, and pentagons.
Journal ArticleDOI

Dynamics in reactions on metal surfaces: A theoretical perspective.

TL;DR: It is shown that the widely available density functional theory of metals and their interactions with molecules have enabled first principles theoretical models for treating surface reaction dynamics, and new theoretical tools include methods to construct high-dimensional adiabatic potential energy surfaces, and to characterize nonadiabatic processes within the electronic friction models.
Journal ArticleDOI

Evolution of s p 2 networks with substrate temperature in amorphous carbon films: Experiment and theory

TL;DR: In this article, the evolution of $s{p}^{2}$ hybrids in amorphous carbon (a-C) films deposited at different substrate temperatures was studied experimentally and theoretically.