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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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The effect of Stone–Wales defect on the tensile behavior and fracture of single-walled carbon nanotubes

TL;DR: In this article, the effect of the Stone-Wales defect on the tensile behavior and fracture of armchair, zigzag and chiral single-walled carbon nanotubes (SWCNTs) was studied using an atomistic-based progressive fracture model.
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Packing-Density Effects on the Friction of n-Alkane Monolayers

TL;DR: In this paper, the authors examined the tribology associated with the sliding of a hydrogen-terminated diamond counterface across a monolayer of n-alkane chains that are covalently bound to a diamond substrate.
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Changing chirality during single-walled carbon nanotube growth : a reactive molecular dynamics/Monte Carlo study

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A study on the tensile response and fracture in carbon nanotube-based composites using molecular mechanics

TL;DR: In this paper, a study on the mechanical properties of polyethylene and carbon nanotube (CNT) based composites using molecular mechanics simulations is presented, which consists of amorphous as well as crystalline polyethylenes (PE) composites with embedded single-walled CNTs.
Journal ArticleDOI

Molecular dynamic simulation of spontaneous combustion and pyrolysis of brown coal using ReaxFF

TL;DR: In this paper, the combustion and pyrolysis of brown coal using reactive molecular dynamic (MD) simulation was studied and it was found that the effects of densities are lesser as compared to temperature.