Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1416103 | Carbon | 2007 | 15 Pages |
Abstract
We present Monte Carlo simulations of chains of C70 molecules encapsulated in a single-walled carbon nanotube (SWCNT). For various tube radii R (6.5Â Ã
 ⩽ R ⩽ 7.5 Ã
), we analyze rotational and translational motion of the C70 molecules, as a function of temperature. Apart from reproducing the experimentally well-established lying and standing molecular orientations for small and large tube radii, respectively, we observe, depending on the tube diameter, a variety of molecular motions, orientational flipping of lying molecules, and the migration of molecules resulting in a continual rearrangement of the C70 molecules in clusters of varying lengths. With increasing temperature, the evolution of the pair correlation functions reveals a transition from linear harmonic chain behavior to a hard-sphere liquid, making C70@SWCNT peapods tunable physical realizations of two well-known one-dimensional model systems.
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Energy (General)
Authors
B. Verberck, J. Cambedouzou, G.A. Vliegenthart, G. Gompper, P. Launois,