Rana, Malay Kumar ; Chandra, Amalendu (2015) Wetting behavior of nonpolar nanotubes in simple dipolar liquids for varying nanotube diameter and solute-solvent interactions The Journal of Chemical Physics, 142 (3). 034704. ISSN 0021-9606
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Official URL: http://doi.org/10.1063/1.4905010
Related URL: http://dx.doi.org/10.1063/1.4905010
Abstract
Atomistic simulations of model nonpolar nanotubes in a Stockmayer liquid are carried out for varying nanotube diameter and nanotube-solvent interactions to investigate solvophobic interactions in generic dipolar solvents. We have considered model armchair type single-walled nonpolar nanotubes with increasing radii from (5,5) to (12,12). The interactions between solute and solvent molecules are modeled by the well-known Lennard-Jones and repulsive Weeks-Chandler-Andersen potentials. We have investigated the density profiles and microscopic arrangement of Stockmayer molecules, orientational profiles of their dipole vectors, time dependence of their occupation, and also the translational and rotational motion of solvent molecules in confined environments of the cylindrical nanopores and also in their external peripheral regions. The present results of structural and dynamical properties of Stockmayer molecules inside and near atomistically rough nonpolar surfaces including their wetting and dewetting behavior for varying interactions provide a more generic picture of solvophobic effects experienced by simple dipolar liquids without any specific interactions such as hydrogen bonds.
Item Type: | Article |
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Source: | Copyright of this article belongs to AIP Publishing LLC |
ID Code: | 130211 |
Deposited On: | 23 Nov 2022 09:17 |
Last Modified: | 23 Nov 2022 09:17 |
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