Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/62835
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Type: Journal article
Title: Encapsulation of methane in nanotube bundles
Author: Adisa, O.
Cox, B.
Hill, J.
Citation: Micro and Nano Letters, 2010; 5(5):291-295
Publisher: The Institution of Engineering and Technology
Issue Date: 2010
ISSN: 1750-0443
1750-0443
Statement of
Responsibility: 
O.O. Adisa, B.J. Cox, J.M. Hill
Abstract: In this study, the authors investigate methane storage, and in particular the binding and suction energies of methane in (8, 8) carbon and (10, 10) silicon nanotube bundles. Employing the Lennard-Jones potential together with the continuous approximation, they determine the interaction energy, molecular force and suction energy for a methane molecule in nanotube bundles. The authors approximate the methane molecule by assuming that the four hydrogen atoms are smeared over a spherical surface of a certain radius with the carbon atom located at the centre of the sphere. This is an important assumption in terms of simplifying the calculation, since with this model the particular orientations of the hydrogen atoms do not enter the calculation. Their results indicate that silicon nano structures may be superior candidates for methane storage at high temperatures, particularly in the range 200-400 K.
Rights: © The Institution of Engineering and Technology 2010
DOI: 10.1049/mnl.2010.0075
Grant ID: ARC
Published version: http://dx.doi.org/10.1049/mnl.2010.0075
Appears in Collections:Aurora harvest
Mathematical Sciences publications

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