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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 51, 1984 - Issue 6
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Original Articles

A molecular dynamics simulation of nitrogen adsorbed on graphite

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Pages 1331-1356 | Received 04 Jul 1983, Accepted 27 Jul 1983, Published online: 26 Oct 2007
 

Abstract

The adsorption of N2 molecules on a structured graphite surface has been studied using the molecular dynamics technique. N2 is modelled using two Lennard-Jones centres and partial charges to represent the quadrupole moment. The surface, which is represented by a rigid external field, has longitudinal structure and the adsorbate molecules form a √3 × √3 commensurate solid with herringbone orientational ordering in two sublattices. The model exhibits a rotational transition to plastic crystal at 33 K (experiment 27 K). The simulated transition temperature does not vary markedly with coverage. The adsorbate shows little residual herringbone ordering above the phase transition, but a six-fold ordering due to the crystal field of the adsorbate appears.

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